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Progress Toward Robust Polymer Hydrogels

Sina Naficy A , Hugh R. Brown A B , Joselito M. Razal A , Geoffrey M. Spinks A B C and Philip G. Whitten A C
+ Author Affiliations
- Author Affiliations

A Intelligent Polymer Research Institute and ARC Centre of Excellence in Electromaterials Science, University of Wollongong, Innovation Campus, Squires Way, Fairy Meadow, NSW, 2519, Australia.

B School of Mechanical, Materials and Mechatronic Engineering, University of Wollongong, Northfields Avenue, Wollongong, NSW, 2522, Australia.

C Corresponding authors. Email: gspinks@uow.edu.au; whitten@uow.edu.au

Australian Journal of Chemistry 64(8) 1007-1025 https://doi.org/10.1071/CH11156
Submitted: 20 April 2011  Accepted: 18 July 2011   Published: 19 August 2011



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Advanced Materials Technologies. 2022 7(12).
Mechanical strengthened alginate/polyacrylamide hydrogel crosslinked by barium and ferric dual ions
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Journal of Materials Science. 2017 52(14). p.8538
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npj Computational Materials. 2021 7(1).
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Mechanical properties derived from phase separation in co-polymer hydrogels
Nixon R.M., ten Hove J.B., Orozco A., Jenkins Z.M., Baenen P.C., Wiatt M.K., Zuluaga J., Sawyer W.G., Angelini T.E.
Journal of the Mechanical Behavior of Biomedical Materials. 2016 55 p.286
Tailoring Physical Properties of Dual-Network Acrylamide Hydrogel Composites by Engineering Molecular Structures of the Cross-linked Network
Son Dongwan, Hwang Hwanmin, Fontenot Jake F., Lee Changjae, Jung Jangwook P., Kim Myungwoong
ACS Omega. 2022 7(34). p.30028
Extrusion printing of ionic–covalent entanglement hydrogels with high toughness
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Journal of Materials Chemistry B. 2013 1(38). p.4939
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Carbohydrate Polymers. 2022 297 p.120054
Rapidly in situ forming adhesive hydrogel based on a PEG-maleimide modified polypeptide through Michael addition
Zhou Yalin, Nie Wei, Zhao Jin, Yuan Xiaoyan
Journal of Materials Science: Materials in Medicine. 2013 24(10). p.2277
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ACS Applied Materials & Interfaces. 2022 14(3). p.4479
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Electromechanically Active Polymers (2016)
Agrawal Garima, Pich Andrij
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Hu Jian, Kurokawa Takayuki, Nakajima Tasuku, Sun Tao Lin, Suekama Tiffany, Wu Zi Liang, Liang Song Miao, Gong Jian Ping
Macromolecules. 2012 45(23). p.9445
A high strain, adhesive, self-healable poly(acrylic acid) hydrogel with temperature sensitivity as an epidermal sensor
Zhang Rui, Ruan Hengzhi, Fu Qionglong, Zhu Xuedong, Yao Yuan
Materials Advances. 2020 1(3). p.329
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Polymer. 2022 250 p.124899
Handbook of Thermosetting Foams, Aerogels, and Hydrogels (2024)
Khan Masihullah Jabarulla, Varley Russell John
4D sequential actuation: combining ionoprinting and redox chemistry in hydrogels
Baker Anna B, Wass Duncan F, Trask Richard S
Smart Materials and Structures. 2016 25(10). p.10LT02
High strength and antibacterial polyelectrolyte complex CS/HS hydrogel films for wound healing
Shu Mengmeng, Long Shijun, Huang Yiwan, Li Dapeng, Li Haiyan, Li Xuefeng
Soft Matter. 2019 15(38). p.7686
Extremely strong and tough hydrogels as prospective candidates for tissue repair – A review
Costa Ana M.S., Mano João F.
European Polymer Journal. 2015 72 p.344
Creep Behavior and Delayed Fracture of Tough Polyampholyte Hydrogels by Tensile Test
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Macromolecules. 2016 49(15). p.5630
Rheological properties of thermoresponsive nanocomposite hydrogels
Hosseini Hossein, Tenhu Heikki, Hietala Sami
Journal of Applied Polymer Science. 2016 133(11).
Facile preparation of hydrogen-bonded supramolecular polyvinyl alcohol-glycerol gels with excellent thermoplasticity and mechanical properties
Shi Shengjie, Peng Xin, Liu Tianqi, Chen Ya-Nan, He Changcheng, Wang Huiliang
Polymer. 2017 111 p.168
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Materials & Design. 2019 163 p.107547
Development of Hydrogels with Self-Healing Properties for Delivery of Bioactive Agents
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Molecular Pharmaceutics. 2021 18(5). p.1833
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Journal of Polymer Science Part B: Polymer Physics. 2016 54(23). p.2432
Self-consistent fractal geometry in polyampholyte hydrogels undergoing exchange and correlation charge-density
Xing Ziyu, Lu Haibao, Fu Yong-Qing
Journal of Physics D: Applied Physics. 2022 55(40). p.405302
Nanocomposite hydrogels: Fracture toughness and energy dissipation mechanisms
Klein Andrea, Whitten Philip G., Resch Katharina, Pinter Gerald
Journal of Polymer Science Part B: Polymer Physics. 2015 53(24). p.1763
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Kass Lauren, Cardenas‐Vasquez Ernesto Daniel, Hsiao Lilian C.
AIChE Journal. 2019 65(12).
In situ-forming, mechanically resilient hydrogels for cell delivery
Young Stuart A., Riahinezhad Hossein, Amsden Brian G.
Journal of Materials Chemistry B. 2019 7(38). p.5742
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Lane Dwight D., Kaur Sarbjit, Weerasakare G. Mahika, Stewart Russell J.
Soft Matter. 2015 11(35). p.6981
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ACS Applied Materials & Interfaces. 2016 8(35). p.22774
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Cai Li‐Heng, Kodger Thomas E., Guerra Rodrigo E., Pegoraro Adrian F., Rubinstein Michael, Weitz David A.
Advanced Materials. 2015 27(35). p.5132
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Fraser Stephanie A., Van Zyl Werner E.
Macromolecular Materials and Engineering. 2022 307(7).
Ostwald ripening for designing time‐dependent crystal hydrogels
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Angewandte Chemie. 2024 136(17).
Nanostructure-Driven Replication of Soft Tissue Biomechanics in a Thermoplastic Elastomer Hydrogel
Lewis Jackson T., Fischenich Kristine M., Haut Donahue Tammy L., Bailey Travis S.
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Bain Erich D., Long Tyler R., Beyer Frederick L., Savage Alice M., Dadmun Mark D., Martin Halie, Lenhart Joseph L., Mrozek Randy A.
Macromolecules. 2018 51(12). p.4705
Molecular weight distribution of network strands in double network hydrogels estimated by mechanical testing
Xin Hai, Brown Hugh R., Spinks Geoffrey M.
Polymer. 2014 55(13). p.3037
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Cook Robert F, Oyen Michelle L
Journal of Physics: Materials. 2021 4(2). p.021001
Anisotropic tough poly(2-hydroxyethyl methacrylate) hydrogels fabricated by directional freezing redox polymerization
Zhu Jintang, Wang Jianwu, Liu Qianyun, Liu Yahui, Wang Lei, He Changcheng, Wang Huiliang
J. Mater. Chem. B. 2013 1(7). p.978
Progress in Digital and Physical Manufacturing (2020)
Zadeh Hossein Najaf, Huber Tim, Dixon Freya, Fee Conan, Clucas Don
Dual Ionically Cross-linked Double-Network Hydrogels with High Strength, Toughness, Swelling Resistance, and Improved 3D Printing Processability
Li Xuefeng, Wang Hui, Li Dapeng, Long Shijun, Zhang Gaowen, Wu ZiLiang
ACS Applied Materials & Interfaces. 2018 10(37). p.31198
Mechanical properties of tough hydrogels synthesized with a facile simultaneous radiation polymerization and cross-linking method
Jiang Fangzhi, Wang Xuezhen, He Changcheng, Saricilar Sureyya, Wang Huiliang
Radiation Physics and Chemistry. 2015 106 p.7
Novel polyacrylamide hydrogels by highly conductive, water-processable graphene
Alam Ashraful, Kuan Hsu-Chiang, Zhao Zhiheng, Xu Jian, Ma Jun
Composites Part A: Applied Science and Manufacturing. 2017 93 p.1
Controlled cross-linking strategy for formation of hydrogels, microgels and nanogels
Cao Qing-Chen, Wang Xing, Wu De-Cheng
Chinese Journal of Polymer Science. 2018 36(1). p.8
Near-Infrared Light-Responsive Poly(N-isopropylacrylamide)/Graphene Oxide Nanocomposite Hydrogels with Ultrahigh Tensibility
Shi Kun, Liu Zhuang, Wei Yun-Yan, Wang Wei, Ju Xiao-Jie, Xie Rui, Chu Liang-Yin
ACS Applied Materials & Interfaces. 2015 7(49). p.27289
Fundamentals of double network hydrogels
Chen Qiang, Chen Hong, Zhu Lin, Zheng Jie
Journal of Materials Chemistry B. 2015 3(18). p.3654
Concepts and Design of Materials Nanoarchitectonics (2022)
Imwiset Kamonnart (Jaa), Teepakakorn Aranee (Pleng), Saengdet Ploypailin (Milin), Tirayaphanitchkul Chalunda (Baitong), Ogawa Makoto
Tough, ultrastretchable and tear-resistant hydrogels enabled by linear macro-cross-linker
Cao Zhenxing, Wang Yi, Wang Hao, Ma Changshu, Li Heng, Zheng Jing, Wu Jinrong, Huang Guangsu
Polymer Chemistry. 2019 10(25). p.3503
A minimization principle for deformation-diffusion processes in polymeric hydrogels: Constitutive modeling and FE implementation
Böger Lukas, Nateghi Aref, Miehe Christian
International Journal of Solids and Structures. 2017 121 p.257
Tough, self-recovery and self-healing polyampholyte hydrogels
Sun Tao Lin, Cui Kunpeng, Gong Jian Ping
Polymer Science, Series C. 2017 59(1). p.11
Robust nanostructured POSS-PEG hydrogels. Self-deployment powered by water
Romo-Uribe Angel
Polymer. 2022 256 p.125247
Nano-structured smart hydrogels with rapid response and high elasticity
Xia Lie-Wen, Xie Rui, Ju Xiao-Jie, Wang Wei, Chen Qianming, Chu Liang-Yin
Nature Communications. 2013 4(1).
Bulk Energy Dissipation Mechanism for the Fracture of Tough and Self-Healing Hydrogels
Sun Tao Lin, Luo Feng, Hong Wei, Cui Kunpeng, Huang Yiwan, Zhang Hui Jie, King Daniel R., Kurokawa Takayuki, Nakajima Tasuku, Gong Jian Ping
Macromolecules. 2017 50(7). p.2923
Fabrication of three-dimensional metal structures embedded in hydrogel by using femtosecond laser ablation and electroplating
Chen Tao, Zhao Pingping, Li Kaidi, Si Jinhai, Hu Jian, Gao Bo, Gao Yang, Hou Xun
Optics Letters. 2020 45(22). p.6286
High strain stretchable solid electrolytes
Saricilar (Zengin) Sureyya, Antiohos Dennis, Shu Kewei, Whitten Philip G., Wagner Klaudia, Wang Caiyun, Wallace Gordon G.
Electrochemistry Communications. 2013 32 p.47
Materials Nanoarchitectonics Using 2D Layered Materials: Recent Developments in the Intercalation Process
Sangian Danial, Ide Yusuke, Bando Yoshio, Rowan Alan E., Yamauchi Yusuke
Small. 2018 14(33).
Encyclopedia of Biomedical Polymers and Polymeric Biomaterials (2015)
Punjabi Pinki B., Chauhan Narendra Pal Singh, Juneja Priya, Jangid Nirmala Kumari, Kalal Sangeeta
Robust biopolymer based ionic–covalent entanglement hydrogels with reversible mechanical behaviour
Kirchmajer Damian M., Panhuis Marc in het
J. Mater. Chem. B. 2014 2(29). p.4694
Synthesis of Graphene Peroxide and Its Application in Fabricating Super Extensible and Highly Resilient Nanocomposite Hydrogels
Liu Jiaqi, Chen Caifeng, He Changcheng, Zhao Jing, Yang Xiaojing, Wang Huiliang
ACS Nano. 2012 6(9). p.8194
Actuating individual electrospun hydrogel nanofibres
Gestos Adrian, Whitten Philip G., Wallace Gordon G., Spinks Geoffrey M.
Soft Matter. 2012 8(31). p.8082
Novel Biocompatible Thermoresponsive Poly(N-vinyl Caprolactam)/Clay Nanocomposite Hydrogels with Macroporous Structure and Improved Mechanical Characteristics
Shi Kun, Liu Zhuang, Yang Chao, Li Xiao-Ying, Sun Yi-Min, Deng Yi, Wang Wei, Ju Xiao-Jie, Xie Rui, Chu Liang-Yin
ACS Applied Materials & Interfaces. 2017 9(26). p.21979
“Click” on SAP: Superabsorbent polymer surface modification via CuAAC reaction toward antibacterial activity and improved swollen gel strength
Moini N., Zohuriaan-Mehr M.J., Kabiri K., Khonakdar H.A.
Applied Surface Science. 2019 487 p.1131
Extreme Hydrogel Bioelectronics
He Xuecheng, Liu Dingyao, Cui Binbin, Huang Hao, Dai Shilei, Pang Ivo, Qiao Yuchun, Xu Tailin, Zhang Shiming
Advanced Functional Materials. 2024
Handbook of Nanotechnology Applications (2021)
Koh Ching Theng
Dynamic behavior of tough polyelectrolyte complex hydrogels from chitosan and sodium hyaluronate
Liu Yong, Hu Jian, Xiao Zhenhua, Jin Xiaolin, Jiang Chuanxia, Yin Panchao, Tang Liqun, Sun Taolin
Carbohydrate Polymers. 2022 288 p.119403
A phase diagram of neutral polyampholyte – from solution to tough hydrogel
Ihsan Abu Bin, Sun Tao Lin, Kuroda Shinya, Haque Md. Anamul, Kurokawa Takayuki, Nakajima Tasuku, Gong Jian Ping
Journal of Materials Chemistry B. 2013 1(36). p.4555
Interactions Affecting the Mechanical Properties of Macromolecular Microsphere Composite Hydrogels
Jiang Fangzhi, Huang Ting, He Changcheng, Brown Hugh R., Wang Huiliang
The Journal of Physical Chemistry B. 2013 117(43). p.13679
Strong and tough nanofibrous hydrogel composites based on biomimetic principles
Tonsomboon Khaow, Butcher Annabel L., Oyen Michelle L.
Materials Science and Engineering: C. 2017 72 p.220
Fracture Process of Microgel-Reinforced Hydrogels under Uniaxial Tension
Hu Jian, Kurokawa Takayuki, Nakajima Tasuku, Wu Zi Liang, Liang Song Miao, Gong Jian Ping
Macromolecules. 2014 47(11). p.3587
Time-dependent mechanical properties of tough ionic-covalent hybrid hydrogels
Xin Hai, Brown Hugh R., Naficy Sina, Spinks Geoffrey M.
Polymer. 2015 65 p.253
Biomimetic jellyfish-like PVA/graphene oxide nanocomposite hydrogels with anisotropic and pH-responsive mechanical properties
Peng Xin, He Changcheng, Liu Jiaqi, Wang Huiliang
Journal of Materials Science. 2016 51(12). p.5901
Stretchable, transparent, self-adhesive, anti-freezing and ionic conductive nanocomposite hydrogels for flexible strain sensors
Zhang Yi, Liu Han, Wang Ping, Yu Yuanyuan, Zhou Man, Xu Bo, Cui Li, Wang Qiang
European Polymer Journal. 2023 186 p.111824
Bioinspired Smart Actuator Based on Graphene Oxide-Polymer Hybrid Hydrogels
Wang Tao, Huang Jiahe, Yang Yiqing, Zhang Enzhong, Sun Weixiang, Tong Zhen
ACS Applied Materials & Interfaces. 2015 7(42). p.23423
Review: Friction and Lubrication with High Water Content Crosslinked Hydrogels
Bonyadi Shabnam Z., Hasan Md. Mahmudul, Kim Jiho, Mahmood Samsul, Schulze Kyle D., Dunn Alison C.
Tribology Letters. 2020 68(4).
Synthesis and characterization of robust double-networks based on end-linked, pH-responsive first networks
Kitiri Elina N., Rikkou-Kalourkoti Maria, Sophocleous Manolia, Patrickios Costas S.
European Polymer Journal. 2015 69 p.573
Hetero-network hydrogels crosslinked with silica nanoparticles for strategic control of thermal responsive property
Rahman M. Maria, Alam Md. Ashraful, Ihara Hirotaka, Takafuji Makoto
Soft Matter. 2021 17(17). p.4615
Mechanical properties of interpenetrating polymer network hydrogels based on hybrid ionically and covalently crosslinked networks
Naficy Sina, Kawakami Shota, Sadegholvaad Sasha, Wakisaka Minato, Spinks Geoffrey M.
Journal of Applied Polymer Science. 2013 130(4). p.2504
Phase-Separation-Induced Porous Hydrogels from Amphiphilic Triblock Copolymer with High Permeability and Mechanical Strength
Lu Mengze, Liu Fei, Tan Rui, Xiao Zhenhua, Dong Xue-hui, Wang Hui, Tang Liqun, Chen Tingjian, Wu Zi Liang, Hong Wei, Sun Taolin
Chemistry of Materials. 2022 34(24). p.10995
Preparation and Characterization of Hydrogels Fabricated From Chitosan and Poly(vinyl alcohol) for Tissue Engineering Applications
Wang Ziyu, Mahmood Nasif, Budhathoki-Uprety Januka, Brown Ashley C., King Martin W., Gluck Jessica M.
ACS Applied Bio Materials. 2024
Proteoglycans and Glycosaminoglycans Improve Toughness of Biocompatible Double Network Hydrogels
Zhao Yu, Nakajima Tasuku, Yang Jing Jing, Kurokawa Takayuki, Liu Jian, Lu Jishun, Mizumoto Shuji, Sugahara Kazuyuki, Kitamura Nobuto, Yasuda Kazunori, Daniels A. U. D., Gong Jian Ping
Advanced Materials. 2014 26(3). p.436
Movable Cross-Linked Polymeric Materials from Bulk Polymerization of Reactive Polyrotaxane Cross-Linker with Acrylate Monomers
Koyanagi Kohei, Takashima Yoshinori, Yamaguchi Hiroyasu, Harada Akira
Macromolecules. 2017 50(15). p.5695
4D Printing of Reversible Shape Morphing Hydrogel Structures
Naficy Sina, Gately Reece, Gorkin Robert, Xin Hai, Spinks Geoffrey M.
Macromolecular Materials and Engineering. 2017 302(1). p.1600212
A Review on Layered Mineral Nanosheets Intercalated with Hydrophobic/Hydrophilic Polymers and Their Applications
Sangian Danial, Naficy Sina, Dehghani Fariba, Yamauchi Yusuke
Macromolecular Chemistry and Physics. 2018 219(13).
Thin, Tough, pH-Sensitive Hydrogel Films with Rapid Load Recovery
Naficy Sina, Spinks Geoffrey M., Wallace Gordon G.
ACS Applied Materials & Interfaces. 2014 6(6). p.4109
Polyelectrolyte Complex Hydrogels from Controlled Kneading and Annealing‐Induced Tightly Wound and Highly Entangled Natural Polysaccharides
Chen Shunlan, Li Dapeng, Wen Ying, Peng Gege, Ye Kexin, Huang Yiwan, Long Shijun, Li Xuefeng
Advanced Healthcare Materials. 2024 13(8).
Relationship between crosslinking structure and tensile properties of a double network nano-composite hydrogel
Kang Min Kwan, Lee Dae Sung, Na Yang Ho
Journal of Polymer Research. 2023 30(2).
Using Artificial Skin Devices as Skin Replacements: Insights into Superficial Treatment
Low Zhi Wei Kenny, Li Zibiao, Owh Cally, Chee Pei Lin, Ye Enyi, Kai Dan, Yang Da‐Peng, Loh Xian Jun
Small. 2019 15(9).
A tough, precision-porous hydrogel scaffold: Ophthalmologic applications
Teng Wenqi, Long Thomas J., Zhang Qianru, Yao Ke, Shen Tueng T., Ratner Buddy D.
Biomaterials. 2014 35(32). p.8916
Oppositely Charged Polyelectrolytes Form Tough, Self‐Healing, and Rebuildable Hydrogels
Luo Feng, Sun Tao Lin, Nakajima Tasuku, Kurokawa Takayuki, Zhao Yu, Sato Koshiro, Ihsan Abu Bin, Li Xufeng, Guo Honglei, Gong Jian Ping
Advanced Materials. 2015 27(17). p.2722
Evaporative Cooling Hydrogel Packaging for Storing Biologics Outside of the Cold Chain
Ferber Shiran, Behrens Adam M., McHugh Kevin J., Rosenberg Evan M., Linehan Allison R., Sugarman James L., Jayawardena Hapuarachchige Surangi N., Langer Robert, Jaklenec Ana
Advanced Healthcare Materials. 2018 7(14).
Semicrystalline Hydrophobically Associated Hydrogels with Integrated High Performances
Wei Dandan, Yang Jia, Zhu Lin, Chen Feng, Tang Ziqing, Qin Gang, Chen Qiang
ACS Applied Materials & Interfaces. 2018 10(3). p.2946
Smart hydrogel with rapid self-healing and controlled release attributes for biomedical applications
Deka Rishikesh, Boruah Plabita, Ali Asadulla Asraf, Dutta Rupjyoti, Gogoi Parikshit, Sarmah Jayanta K
Smart Materials and Structures. 2022 31(9). p.095039
A strategy of tailoring polymorphs and nanostructures to construct self-reinforced nonswelling high-strength bacterial cellulose hydrogels
Zhang Minghao, Chen Shiyan, Sheng Nan, Wang Baoxiu, Yao Jingjing, Wu Zhuotong, Wang Huaping
Nanoscale. 2019 11(32). p.15347
Smart hydrogels: Network design and emerging applications
Liu Zhuang, Wei Jie, Faraj Yousef, Ju Xiao‐Jie, Xie Rui, Wang Wei, Chu Liang‐Yin
The Canadian Journal of Chemical Engineering. 2018 96(10). p.2100
Green synthesis of nickel oxide, palladium and palladium oxide synthesized via Aspalathus linearis natural extracts: physical properties & mechanism of formation
Mayedwa Noluthando, Mongwaketsi Nametso, Khamlich Saleh, Kaviyarasu Kasinathan, Matinise Nolubabalo, Maaza Malik
Applied Surface Science. 2018 446 p.266
Tough dual nanocomposite hydrogels with inorganic hybrid crosslinking
Du Juan, Xu Shimei, Feng Shun, Yu Lina, Wang Jide, Liu Yumei
Soft Matter. 2016 12(6). p.1649
Tough hydrophilic polyurethane-based hydrogels with mechanical properties similar to human soft tissues
Oveissi Farshad, Naficy Sina, Le Thi Yen Loan, Fletcher David F., Dehghani Fariba
Journal of Materials Chemistry B. 2019 7(22). p.3512
Reduced Graphene Oxide-Based Double Network Polymeric Hydrogels for Pressure and Temperature Sensing
Liu Wei, Zhang Xiaoyuan, Wei Gang, Su Zhiqiang
Sensors. 2018 18(9). p.3162
Electrically conductive, mechanically robust, pH-sensitive graphene/polymer composite hydrogels
Alam Ashraful, Meng Qingshi, Shi Ge, Arabi Sherif, Ma Jun, Zhao Ning, Kuan Hsu-Chiang
Composites Science and Technology. 2016 127 p.119
Mechanically strong and thermosensitive macromolecular microsphere composite poly(N-isopropylacrylamide) hydrogels
Zhao Jing, Jiao Kexin, Yang Jing, He Changcheng, Wang Huiliang
Polymer. 2013 54(6). p.1596
Tough hydrogels for soft artificial muscles
Oveissi Farshad, Fletcher David F., Dehghani Fariba, Naficy Sina
Materials & Design. 2021 203 p.109609
A New Type of Nanogel Carrier based on Mixed Pluronic Loaded with Low-Dose Antitumor Drugs
Yin Meizhen, Su Zhenhong, Cui Bingcun, Han Yingchao, Dai Honglian, Yu Xin
Journal of Wuhan University of Technology-Mater. Sci. Ed.. 2019 34(4). p.960
Vibration at structural resonance frequency of hydrophilic substrates enhances biofilm removal
Ballance William C., Oh Inkyu, Lai Yang, Elhebeary Mohamed, Saif Taher, Hu Yuhang, Kong Hyunjoon
Sensors and Actuators B: Chemical. 2019 299 p.126950
Water‐Soluble Three‐Dimensional Polymers: Non‐Covalent and Covalent Synthesis and Functions†
Yang Bo, Wang Hui, Zhang Dan‐Wei, Li Zhan‐Ting
Chinese Journal of Chemistry. 2020 38(9). p.970
Superior fracture resistance of fiber reinforced polyampholyte hydrogels achieved by extraordinarily large energy-dissipative process zones
Huang Yiwan, King Daniel R., Cui Wei, Sun Tao Lin, Guo Honglei, Kurokawa Takayuki, Brown Hugh R., Hui Chung-Yuen, Gong Jian Ping
Journal of Materials Chemistry A. 2019 7(22). p.13431
Unlocking the biological response of smart Stimuli-Responsive hydrogels and their application in biological systems
Kumi Moses, Ejeromedoghene Onome, Sudane Wellington Dana, Zhang Zexin
European Polymer Journal. 2024 209 p.112906
Hyperelastic Tough Gels through Macrocross‐Linking
Goswami Shailesh K., McAdam Christopher John, Hanton Lyall R., Moratti Stephen C.
Macromolecular Rapid Communications. 2017 38(14).
Hydrogels with superior mechanical properties from the synergistic effect in hydrophobic–hydrophilic copolymers
Mredha Md. Tariful Islam, Pathak Suraj Kumar, Tran Van Tron, Cui Jiaxi, Jeon Insu
Chemical Engineering Journal. 2019 362 p.325
Recent Advances in Design Strategies for Tough and Stretchable Hydrogels
Maiti Chiranjit, Imani Kusuma Betha Cahaya, Yoon Jinhwan
ChemPlusChem. 2021 86(4). p.601
Resilin-PEG Hybrid Hydrogels Yield Degradable Elastomeric Scaffolds with Heterogeneous Microstructure
McGann Christopher L., Akins Robert E., Kiick Kristi L.
Biomacromolecules. 2016 17(1). p.128
Advanced Functional Polymers: Properties and Supramolecular Phenomena in Hydrogels and Polyrotaxane-based Materials
Ihsan Abu Bin, Imran Abu Bin, Susan Md. Abu Bin Hasan
Chemistry Africa. 2023 6(1). p.79
Sustainable Polymer Composites and Nanocomposites (2019)
Moini Nasrin, Jahandideh Arash, Anderson Gary
Electromechanically Active Polymers (2016)
Agrawal Garima, Pich Andrij
3D Printing of Ultratough Polyion Complex Hydrogels
Zhu Fengbo, Cheng Libo, Yin Jun, Wu Zi Liang, Qian Jin, Fu Jianzhong, Zheng Qiang
ACS Applied Materials & Interfaces. 2016 8(45). p.31304
Advanced Materials and Manufacturing Techniques for Biomedical Applications (2023)
Majhi Arabinda, Dhiman Megha, Roy Partha, Lahiri Debrupa
Inelastic behaviour of bacterial cellulose hydrogel: In aqua cyclic tests
Gao Xing, Shi Zhijun, Liu Changqing, Yang Guang, Sevostianov Igor, Silberschmidt Vadim V.
Polymer Testing. 2015 44 p.82
Facile Fabrication of Tough Hydrogels Physically Cross-Linked by Strong Cooperative Hydrogen Bonding
Song Guoshan, Zhang Lei, He Changcheng, Fang De-Cai, Whitten Philip G., Wang Huiliang
Macromolecules. 2013 46(18). p.7423
Aurelia auritaInspired Artificial Mesoglea
Joshi Keyur, Villanueva Alex, Smith Colin, Maurya Deepam, Blottman John, Priya Shashank
Integrated Ferroelectrics. 2013 148(1). p.53
Recent Advances in Design Strategies of Tough Hydrogels
Zhang Xiaojia, Xiang Jinxi, Hong Yanlong, Shen Lan
Macromolecular Rapid Communications. 2022 43(15).
Printed organic electronic device components from edible materials
Keller Alex, Panhuis Marc in het
MRS Proceedings. 2015 1717
Mechanically Robust, Electrically Conductive and Stimuli‐Responsive Binary Network Hydrogels Enabled by Superelastic Graphene Aerogels
Qiu Ling, Liu Diyan, Wang Yufei, Cheng Chi, Zhou Kun, Ding Jie, Truong Van‐Tan, Li Dan
Advanced Materials. 2014 26(20). p.3333
A review on tough and sticky hydrogels
Peak Charles W., Wilker Jonathan J., Schmidt Gudrun
Colloid and Polymer Science. 2013 291(9). p.2031
Enhance the mechanical performance of polyacrylamide hydrogel by aluminium-modified colloidal silica
Ye Lei, Tang Yujing, Qiu Dong
Colloids and Surfaces A: Physicochemical and Engineering Aspects. 2014 447 p.103
Fracture, Fatigue, Failure and Damage Evolution , Volume 3 (2021)
Mac Donald Kimberley A., Ravichandran Guruswami
Peptide‐Crosslinked, Highly Entangled Hydrogels with Excellent Mechanical Properties but Ultra‐Low Solid Content
Liu Pengyu, Zhang Yan, Guan Ying, Zhang Yongjun
Advanced Materials. 2023 35(13).
Polymers blended peanuts activated carbon composite hydrogels fabricated Ag NPs as dip-catalyst for industrial dyes discoloration in aqueous medium
Al-Ghamdi Youssef O., Saeed Ghufran, Ali Mubarak, Ali Kifayat, Ullah Kaleem, Khan Noureen, Iqbal Mudassir, Alzahrani Abdullah Y.A., Khan Shahid Ali
Industrial Crops and Products. 2022 188 p.115588
A Novel Polyvinyl Alcohol‐Based Hydrogel with Ultra‐Fast Self‐Healing Ability and Excellent Stretchability Based on Multi Dynamic Covalent Bond Cross‐Linking
Ji Nan, Luo Jin, Zhang Weiwei, Sun Jun, Wang Jianjun, Qin Chuanxiang, Zhuo Qiqi, Dai Lixing
Macromolecular Materials and Engineering. 2023 308(3).
Multimodal underwater adhesion using self-assembled Dopa-bearing ABA triblock copolymer networks
Tang Xiaomin, Bettinger Christopher J.
Journal of Materials Chemistry B. 2018 6(4). p.545
Hybrid Organic‐Inorganic Interfaces (2018)
Chung Hyun‐Joong, Charaya Hemant, Liu Li, Li Xinda
Weak Hydrogen Bonding Enables Hard, Strong, Tough, and Elastic Hydrogels
Hu Xiaobo, Vatankhah‐Varnoosfaderani Mohammad, Zhou Jing, Li Qiaoxi, Sheiko Sergei S.
Advanced Materials. 2015 27(43). p.6899
Tough and stretchy double-network hydrogels based on in situ interpenetration of polyacrylamide and physically cross-linked polyurethane
Wu Feng, Chen Lei, Wang Yidi, Fei Bin
Journal of Materials Science. 2019 54(18). p.12131
Double Hydrogen‐Bonding pH‐Sensitive Hydrogels Retaining High‐Strengths Over a Wide pH Range
Gao Han, Wang Ning, Hu Xiufeng, Nan Wenjing, Han Yanjiao, Liu Wenguang
Macromolecular Rapid Communications. 2013 34(1). p.63
In situ polymerized hyperbranched polymer reinforced poly(acrylic acid) hydrogels
Dehbari Nazila, Tavakoli Javad, Singh Khatrao Simranjeet, Tang Youhong
Materials Chemistry Frontiers. 2017 1(10). p.1995
Mechanoresponsive self-growing hydrogels inspired by muscle training
Matsuda Takahiro, Kawakami Runa, Namba Ryo, Nakajima Tasuku, Gong Jian Ping
Science. 2019 363(6426). p.504
High mechanical properties and excellent anisotropy of dually synergistic network wood fiber gel for human–computer interactive sensors
Han Xuewen, Han Xiaoshuai, Wang Zhenxing, Wang Sijie, Meng Wanyao, Lv Haifeng, Zhou Zijing, Pu Junwen
Cellulose. 2022 29(8). p.4495
A universal strategy for preparing tough and smart glassy hydrogels
Lin Xinxing, Wang Xiaolin, Cui Hongyuan, Ouyang Gangfeng, Guo Hui
Chemical Engineering Journal. 2023 457 p.141280
Multi-scale multi-mechanism design of tough hydrogels: building dissipation into stretchy networks
Zhao Xuanhe
Soft Matter. 2014 10(5). p.672
Thermo- and redox-responsive dendronized polymer hydrogels
Zhang Xiacong, Yin Yu, Yan Jiatao, Li Wen, Zhang Afang
Polymer Chemistry. 2018 9(6). p.712
Strain-induced stiffening of nanocellulose-reinforced poly(vinyl alcohol) hydrogels mimicking collagenous soft tissues
Tummala Gopi Krishna, Joffre Thomas, Rojas Ramiro, Persson Cecilia, Mihranyan Albert
Soft Matter. 2017 13(21). p.3936
Crack propagation and renucleation in soft brittle hydrogels
Mac Donald Kimberley Ann, Ravichandran Guruswami
International Journal of Fracture. 2020 222(1-2). p.37
Nanogel-Reinforced Polyacrylamide Hydrogel for Potential Vascular Adhesion
Wang Tao, Zhao Weijie, Wu Yue, Wang Xiaohan, Kayitmazer A. Basak, Ahmad Ayyaz, Ramzan Naveed, Si Yi, Wang Jie, Xu Yisheng
ACS Applied Polymer Materials. 2023 5(2). p.1169
Synthesis and Properties of Amphipathic Poly(D,L-lactide-co-glycolide)-polyethylene glycol-poly(D,L-lactide-co-glycolide) Triblock Copolymers
Zhen Wenyao, Zhu Yannan, Wang Weiping, Hou Zhaosheng
Australian Journal of Chemistry. 2015 68(10). p.1593
Highly Flexible, Tough, and Self‐Healing Supramolecular Polymeric Materials Using Host–Guest Interaction
Nakahata Masaki, Takashima Yoshinori, Harada Akira
Macromolecular Rapid Communications. 2016 37(1). p.86
Multifunctional Role of MoS2 in Preparation of Composite Hydrogels: Radical Initiation and Cross-Linking
Lee Kyoung Min, Oh Yuree, Yoon Hyeonseok, Chang Mincheol, Kim Hyungwoo
ACS Applied Materials & Interfaces. 2020 12(7). p.8642
Particle Strengths (2023)
Self-healable, super tough graphene oxide–poly(acrylic acid) nanocomposite hydrogels facilitated by dual cross-linking effects through dynamic ionic interactions
Zhong Ming, Liu Yi-Tao, Xie Xu-Ming
Journal of Materials Chemistry B. 2015 3(19). p.4001
3D printing of an extremely tough hydrogel
Wei Junhua, Wang Jilong, Su Siheng, Wang Shiren, Qiu Jingjing, Zhang Zhenhuan, Christopher Gordon, Ning Fuda, Cong Weilong
RSC Advances. 2015 5(99). p.81324
Self‐Healing Hydrogels
Taylor Danielle Lynne, in het Panhuis Marc
Advanced Materials. 2016 28(41). p.9060
Delayed Swelling and Dissolution of Hydrophobically Associated Hydrogel Coatings by Dilute Aqueous Surfactants
Li Siyuan, Zhang Mengxue, Vogt Bryan D.
ACS Applied Polymer Materials. 2022 4(1). p.250
A pH‐sensitive, strong double‐network hydrogel: Poly(ethylene glycol) methyl ether methacrylates–poly(acrylic acid)
Naficy Sina, Razal Joselito M., Whitten Philip G., Wallace Gordon G., Spinks Geoffrey M.
Journal of Polymer Science Part B: Polymer Physics. 2012 50(6). p.423
Supertough Hybrid Hydrogels Consisting of a Polymer Double‐Network and Mesoporous Silica Microrods for Mechanically Stimulated On‐Demand Drug Delivery
Choi Suji, Choi Young jin, Jang Moon‐Sun, Lee Jung Hee, Jeong Ji Hoon, Kim Jaeyun
Advanced Functional Materials. 2017 27(42).
Mussel-Inspired Histidine-Based Transient Network Metal Coordination Hydrogels
Fullenkamp Dominic E., He Lihong, Barrett Devin G., Burghardt Wesley R., Messersmith Phillip B.
Macromolecules. 2013 46(3). p.1167
Improving the Strength of Ultrastiff Organic–Inorganic Double-Network Hydrogels
Milovanovic Marko, Isselbaecher Nicola, Brandt Volker, Tiller Joerg C.
Chemistry of Materials. 2021 33(21). p.8312
Ultra elastic, stretchable, self-healing conductive hydrogels with tunable optical properties for highly sensitive soft electronic sensors
Wu Meng, Chen Jingsi, Ma Yuhao, Yan Bin, Pan Mingfei, Peng Qiongyao, Wang Wenda, Han Linbo, Liu Jifang, Zeng Hongbo
Journal of Materials Chemistry A. 2020 8(46). p.24718
A tough and self-fusing elastomer tape
Wang Yan-Jie, Li Jia, Xu Ziyang, Liu Bo, Zhao Yiping, Chen Li, Liu Wenguang
Chemical Engineering Journal. 2021 417 p.127967
Effect of solvent–matrix interactions on structures and mechanical properties of micelle‐crosslinked gels
Xu Dan, Xu Ting, Gao Guorong, Xiao Ying, Wang Zongbao, Chen Jing, Zhou Yang, Wang Rong, Yin Jingbo, Fu Jun
Journal of Polymer Science Part B: Polymer Physics. 2019 57(8). p.473
Double-networks based on pH-responsive, amphiphilic “core-first” star first polymer conetworks prepared by sequential RAFT polymerization
Kitiri Elina N., Patrickios Costas S., Voutouri Chrysovalantis, Stylianopoulos Triantafyllos, Hoffmann Ingo, Schweins Ralf, Gradzielski Michael
Polymer Chemistry. 2017 8(1). p.245
Characterization of internal fracture process of double network hydrogels under uniaxial elongation
Nakajima Tasuku, Kurokawa Takayuki, Ahmed Saika, Wu Wen-li, Gong Jian Ping
Soft Matter. 2013 9(6). p.1955
The synthesis and incorporation of a star-shaped bio-based modifier in the acrylic acid based superabsorbent: a strategy to enhance the absorbency under load
Dabbaghi Alaleh, Jahandideh Arash, Kabiri Kourosh, Ramazani Ali, Zohuriaan-Mehr Mohammad J.
Polymer-Plastics Technology and Materials. 2019 58(15). p.1678
Thermoplastic PCL-b-PEG-b-PCL and HDI Polyurethanes for Extrusion-Based 3D-Printing of Tough Hydrogels
Güney Aysun, Gardiner Christina, McCormack Andrew, Malda Jos, Grijpma Dirk W.
Bioengineering. 2018 5(4). p.99
Influence of Sodium Salts on the Swelling and Rheology of Hydrophobically Cross-linked Hydrogels Determined by QCM-D
Zhang Mengxue, Wiener Clinton G., Sepulveda-Medina Pablo I., Douglas Jack F., Vogt Bryan D.
Langmuir. 2019 35(50). p.16612
Controllable and biocompatible 3D bioprinting technology for microorganisms: Fundamental, environmental applications and challenges
Zhao Tianyang, Liu Yinuo, Wu Yichen, Zhao Minghao, Zhao Yingxin
Biotechnology Advances. 2023 69 p.108243
Electrically Conductive, Tough Hydrogels with pH Sensitivity
Naficy Sina, Razal Joselito M., Spinks Geoffrey M., Wallace Gordon G., Whitten Philip G.
Chemistry of Materials. 2012 24(17). p.3425
Improving hydrogels׳ toughness by increasing the dissipative properties of their network
Moghadam Mohamadreza Nassajian, Pioletti Dominique P.
Journal of the Mechanical Behavior of Biomedical Materials. 2015 41 p.161
A Robust, Tough and Multifunctional Polyurethane/Tannic Acid Hydrogel Fabricated by Physical-Chemical Dual Crosslinking
Wen Jie, Zhang Xiaopeng, Pan Mingwang, Yuan Jinfeng, Jia Zhanyu, Zhu Lei
Polymers. 2020 12(1). p.239
Elastic–Plastic Transformation of Polyelectrolyte Complex Hydrogels from Chitosan and Sodium Hyaluronate
Shi Ran, Sun Tao Lin, Luo Feng, Nakajima Tasuku, Kurokawa Takayuki, Bin Yue Zhen, Rubinstein Michael, Gong Jian Ping
Macromolecules. 2018 51(21). p.8887
Physical hydrogels composed of polyampholytes demonstrate high toughness and viscoelasticity
Sun Tao Lin, Kurokawa Takayuki, Kuroda Shinya, Ihsan Abu Bin, Akasaki Taigo, Sato Koshiro, Haque Md. Anamul, Nakajima Tasuku, Gong Jian Ping
Nature Materials. 2013 12(10). p.932
Interpenetrating network design of bioactive hydrogel coatings with enhanced damage resistance
Wancura Megan, Nkansah Abbey, Chwatko Malgorzata, Robinson Andrew, Fairley Ashauntee, Cosgriff-Hernandez Elizabeth
Journal of Materials Chemistry B. 2023 11(24). p.5416
Nanocomposite Gels via in Situ Photoinitiation and Disassembly of TiO2–Clay Composites with Polymers Applied as UV Protective Films
Liao Chuanan, Wu Qing, Su Teng, Zhang Da, Wu Qingsheng, Wang Qigang
ACS Applied Materials & Interfaces. 2014 6(3). p.1356
Nanocarbon in Polymeric Nanocomposite Hydrogel—Design and Multi-Functional Tendencies
Kausar Ayesha
Polymer-Plastics Technology and Materials. 2020 59(14). p.1505
A Universal Molecular Stent Method to Toughen any Hydrogels Based on Double Network Concept
Nakajima Tasuku, Sato Hitomi, Zhao Yu, Kawahara Shinya, Kurokawa Takayuki, Sugahara Kazuyuki, Gong Jian Ping
Advanced Functional Materials. 2012 22(21). p.4426
Hydrogels 2.0: improved properties with nanomaterial composites for biomedical applications
Memic Adnan, Alhadrami Hani A, Hussain M Asif, Aldhahri Musab, Al Nowaiser Fozia, Al-Hazmi Faten, Oklu Rahmi, Khademhosseini Ali
Biomedical Materials. 2015 11(1). p.014104
Mechanical entrapment analysis of enhanced preformed particle gels (PPGs) in mature reservoirs
Farasat Amir, Vafaie Sefti Mohsen, Sadeghnejad Saeid, Saghafi Hamid Reza
Journal of Petroleum Science and Engineering. 2017 157 p.441
Preparation of graphene/poly(vinyl alcohol) composite hydrogel films with enhanced electrical and mechanical properties
Alam Ashraful, Moussa Mahmoud
Polymer Composites. 2020 41(3). p.809
Photodegradable Hydrogels Made via RAFT
Ercole Francesca, Thissen Helmut, Tsang Kelly, Evans Richard A., Forsythe John S.
Macromolecules. 2012 45(20). p.8387
4D Printing with Mechanically Robust, Thermally Actuating Hydrogels
Bakarich Shannon E., Gorkin Robert, Panhuis Marc in het, Spinks Geoffrey M.
Macromolecular Rapid Communications. 2015 36(12). p.1211
Materials and manufacturing perspectives in engineering heart valves: a review
Oveissi F., Naficy S., Lee A., Winlaw D.S., Dehghani F.
Materials Today Bio. 2020 5 p.100038
A double-well potential model for glass transition in a glassy hydrogel undergoing bi-stable interactions with water
Xing Ziyu, Lu Haibao
Soft Matter. 2023 19(34). p.6612
Self-Healing Hydrogels: Preparation, Mechanism and Advancement in Biomedical Applications
Devi V. K. Anupama, Shyam Rohin, Palaniappan Arunkumar, Jaiswal Amit Kumar, Oh Tae-Hwan, Nathanael Arputharaj Joseph
Polymers. 2021 13(21). p.3782
Tough Hydrogels with Dynamic H-Bonds: Structural Heterogeneities and Mechanical Performances
Lian Wei Zhen, Fan Zhi Wei, Cui Kunpeng, Yin Panchao, Yang Junsheng, Jiang Han, Tang Liqun, Sun Taolin
Macromolecules. 2021 54(19). p.8996
Functional Nanocomposite Hydrogels (2023)
Romo-Uribe Angel
Tough polymeric hydrogels using ion-pair comonomers
Wickramasinhage Ravindra N., Goswami Shailesh, McAdam C. John, Hanton Lyall R., Moratti Stephen C.
Soft Matter. 2020 16(11). p.2715
Tough and super-resilient hydrogels synthesized by using peroxidized polymer chains as polyfunctional initiating and cross-linking centers
He Changcheng, Zheng Zhiwei, Zhao Di, Liu Jiaqi, Ouyang Jin, Wang Huiliang
Soft Matter. 2013 9(10). p.2837
Nanocomposite smart hydrogels with improved responsiveness and mechanical properties: A mini review
Liu Zhuang, Faraj Yousef, Ju Xiao‐Jie, Wang Wei, Xie Rui, Chu Liang‐Yin
Journal of Polymer Science Part B: Polymer Physics. 2018 56(19). p.1306
Structure and Hirshfeld surface analysis of the salt N,N,N-trimethyl-1-(4-vinylphenyl)methanaminium 4-vinylbenzenesulfonate
McAdam C. John, Hanton Lyall R., Moratti Stephen C., Simpson Jim, Wickramasinhage Ravindra N.
Acta Crystallographica Section E Crystallographic Communications. 2019 75(7). p.946
Fabrication of ultrafast temperature‐responsive nanofibrous hydrogel with superelasticity and its 'on–off' switchable drug releasing capacity
Zheng Xie, Liu Xiaoyun, Zha Liusheng
Journal of Applied Polymer Science. 2021 138(17).
Double network hydrogels from polyzwitterions: high mechanical strength and excellent anti-biofouling properties
Yin Haiyan, Akasaki Taigo, Lin Sun Tao, Nakajima Tasuku, Kurokawa Takayuki, Nonoyama Takayuki, Taira Toshio, Saruwatari Yoshiyuki, Ping Gong Jian
Journal of Materials Chemistry B. 2013 1(30). p.3685
Mechanical properties, anisotropic swelling behaviours and structures of jellyfish mesogloea
Zhu Jintang, Wang Xuezhen, He Changcheng, Wang Huiliang
Journal of the Mechanical Behavior of Biomedical Materials. 2012 6 p.63
Highly tough, stretchable and resilient hydrogels strengthened with molecular springs and their application as a wearable, flexible sensor
Liu Rui, Wang Haozheng, Lu Wenjun, Cui Lei, Wang Sha, Wang Yafei, Chen Qianbing, Guan Ying, Zhang Yongjun
Chemical Engineering Journal. 2021 415 p.128839
Highly Porous, Biocompatible Tough Hydrogels, Processable via Gel Fiber Spinning and 3D Gel Printing
Naficy Sina, Le Thi Yen Loan, Oveissi Farshad, Lee Aeryne, Hung Jui Chien, Wise Steven G., Winlaw David S., Dehghani Fariba
Advanced Materials Interfaces. 2020 7(3).
Self-Healing and Self-Recovering Hydrogels (2020)
Vogt Bryan D., Weiss R. A.
The role of hydrogen bonding in alginate/poly(acrylamide-co-dimethylacrylamide) and alginate/poly(ethylene glycol) methyl ether methacrylate-based tough hybrid hydrogels
Low Zhi Wei, Chee Pei Lin, Kai Dan, Loh Xian Jun
RSC Advances. 2015 5(71). p.57678
Thermoresponsive poly(N-isopropylacrylamide) nanogels/poly(acrylamide) nanostructured hydrogels
Fernandez V. V. A., Aguilar J., Soltero J. F. A., Moscoso-Sánchez F. J., Sánchez-Díaz J. C., Hernandez E., Bautista F., Puig J. E.
Journal of Macromolecular Science, Part A. 2016 53(3). p.152
Different type of matrix for cardiac implants: biomedical and bioengineering aspects
Shchotkina N., Sokol A., Dolinchuk L., Skorohod I., Filipov R., Shepeleva O., Rudenko N., Yemets I.
Cell and Organ Transplantology. 2021 9(1).
Polymer composite hydrogels containing carbon nanomaterials—Morphology and mechanical and functional performance
Alam Ashraful, Zhang Yongjun, Kuan Hsu-Chiang, Lee Sang-Heon, Ma Jun
Progress in Polymer Science. 2018 77 p.1
The energy dissipation and Mullins effect of tough polymer/graphene oxide hybrid nanocomposite hydrogels
Tang Ziqing, Chen Feng, Chen Qiang, Zhu Lin, Yan Xiaoqiang, Chen Hong, Ren Baiping, Yang Jia, Qin Gang, Zheng Jie
Polymer Chemistry. 2017 8(32). p.4659
Personalizing Biomaterials for Precision Nanomedicine Considering the Local Tissue Microenvironment
Oliva Nuria, Unterman Shimon, Zhang Yi, Conde João, Song Hyun Seok, Artzi Natalie
Advanced Healthcare Materials. 2015 4(11). p.1584
Tough, Self-Recovery and Self-Healing Polyampholyte Hydrogels1, "Высокомолекулярные соединения. Серия С"
Tao Lin Sun, Kunpeng Cui, Jian Ping Gong
Высокомолекулярные соединения С. 2017 (1). p.14
Tough Hydrogels with Fast, Strong, and Reversible Underwater Adhesion Based on a Multiscale Design
Rao Ping, Sun Tao Lin, Chen Liang, Takahashi Riku, Shinohara Gento, Guo Hui, King Daniel R., Kurokawa Takayuki, Gong Jian Ping
Advanced Materials. 2018 30(32).
ChemInform Abstract: Progress Toward Robust Polymer Hydrogels
Naficy Sina, Brown Hugh R., Razal Joselito M., Spinks Geoffrey M., Whitten Philip G.
ChemInform. 2012 43(2).
Finite elasticity of nanocomposite hydrogels
Drozdov A.D.
Composite Interfaces. 2013 20(9). p.673
Construction of ordered structure in polysaccharide hydrogel: A review
Nie Jingyi, Pei Boying, Wang Zhengke, Hu Qiaoling
Carbohydrate Polymers. 2019 205 p.225
Self-Healing Alkyl Acrylate-Based Supramolecular Elastomers Cross-Linked via Host–Guest Interactions
Nomimura Suguru, Osaki Motofumi, Park Junsu, Ikura Ryohei, Takashima Yoshinori, Yamaguchi Hiroyasu, Harada Akira
Macromolecules. 2019 52(7). p.2659
Tough, Resilient, Adhesive, and Anti-Freezing Hydrogels Cross-Linked with a Macromolecular Cross-Linker for Wearable Strain Sensors
Liu Rui, Cui Lei, Wang Haozheng, Chen Qianbing, Guan Ying, Zhang Yongjun
ACS Applied Materials & Interfaces. 2021 13(35). p.42052
Strain-Stiffening Hydrogels with Dynamic, Secondary Cross-Linking
Sonu K. P., Zhou Le, Biswas Santidan, Klier John, Balazs Anna C., Emrick Todd, Peyton Shelly R.
Langmuir. 2023 39(7). p.2659
Design of stiff, tough and stretchy hydrogel composites via nanoscale hybrid crosslinking and macroscale fiber reinforcement
Lin Shaoting, Cao Changyong, Wang Qiming, Gonzalez Mark, Dolbow John E., Zhao Xuanhe
Soft Matter. 2014 10(38). p.7519
Thermoresponsive Supramolecular Hydrogels with High Fracture Toughness
Wang Fei, Weiss R. A.
Macromolecules. 2018 51(18). p.7386
Super-tough hydrogels from shape-memory polyurethane with wide-adjustable mechanical properties
Wu Feng, Chen Lei, Li Yangling, Lee Ka I, Fei Bin
Journal of Materials Science. 2017 52(8). p.4421
Dynamics of carbohydrate strands in water and interactions with clay minerals: influence of pH, surface chemistry, and electrolytes
Jamil Tariq, Gissinger Jacob R., Garley Amanda, Saikia Nabanita, Upadhyay Arun K., Heinz Hendrik
Nanoscale. 2019 11(23). p.11183
A facile method to fabricate hybrid hydrogels with mechanical toughness using a novel multifunctional cross-linker
Li Jiangbo, Liu Hanchao, Wang Chao, Huang Guangsu
RSC Advances. 2017 7(56). p.35311
Tough Physical Double‐Network Hydrogels Based on Amphiphilic Triblock Copolymers
Zhang Hui Jie, Sun Tao Lin, Zhang Ao Kai, Ikura Yumihiko, Nakajima Tasuku, Nonoyama Takayuki, Kurokawa Takayuki, Ito Osamu, Ishitobi Hiroyuki, Gong Jian Ping
Advanced Materials. 2016 28(24). p.4884
A mechanically strengthened polyacrylamide gel matrix fully compatible with electrophoresis of proteins and nucleic acids
Pushparajan Charlotte, Goswami Shailesh K., McAdam C. John, Hanton Lyall R., Dearden Peter K., Moratti Stephen C., Cridge Andrew G.
ELECTROPHORESIS. 2018 39(5-6). p.824
Thermally induced reversible and reprogrammable actuation of tough hydrogels utilising ionoprinting and iron coordination chemistry
Baker Anna B., Wass Duncan F., Trask Richard S.
Sensors and Actuators B: Chemical. 2018 254 p.519
Recent Advances in Degradable Hybrids of Biomolecules and NGs for Targeted Delivery
Stanislawska Iwona, Liwinska Wioletta, Lyp Marek, Stojek Zbigniew, Zabost Ewelina
Molecules. 2019 24(10). p.1873
The Preparation and Simple Analysis of a Clay Nanoparticle Composite Hydrogel
Warren David S., Sutherland Sam P. H., Kao Jacqueline Y., Weal Geoffrey R., Mackay Sean M.
Journal of Chemical Education. 2017 94(11). p.1772
Supramolecular Materials Cross-Linked by Host–Guest Inclusion Complexes: The Effect of Side Chain Molecules on Mechanical Properties
Takashima Yoshinori, Sawa Yuki, Iwaso Kazuhisa, Nakahata Masaki, Yamaguchi Hiroyasu, Harada Akira
Macromolecules. 2017 50(8). p.3254
Formation of silver wires embedded in hydrogels using femtosecond laser ablation and electroplating for strain sensing
Zhao Pingping, Hu Jian, Chen Tao, Si Jinhai, Wu Jingping, Zhang Yu, Li Kaidi, Hou Xun
Journal of Micromechanics and Microengineering. 2022 32(12). p.125005
CO2-responsive gels
Jansen-van Vuuren Ross D., Naficy Sina, Ramezani Maedeh, Cunningham Michael, Jessop Philip
Chemical Society Reviews. 2023 52(10). p.3470
The Suitability of 3-D Printed Eutectic Gallium-Indium Alloy as a Heating Element for Thermally Active Hydrogels
Hamilton Charles, Alici Gursel, Spinks Geoff, in het Panhuis Marc
MRS Advances. 2017 2(6). p.335
Mechanically Strong, Tough, and Shape Deformable Poly(acrylamide-co-vinylimidazole) Hydrogels Based on Cu2+ Complexation
Jiao Chen, Zhang Jianan, Liu Tianqi, Peng Xin, Wang Huiliang
ACS Applied Materials & Interfaces. 2020 12(39). p.44205
Recent progress of fluorescent gels: construction and application
Yu Peng, Zhao Yanru, Li Xinjin, Zhao Zengdian, Dong Yunhui, Li Xiangye
Materials Today Communications. 2024 38 p.108495
Extremely Stretchable and Fast Self‐Healing Hydrogels
Jeon Insu, Cui Jiaxi, Illeperuma Widusha R. K., Aizenberg Joanna, Vlassak Joost J.
Advanced Materials. 2016 28(23). p.4678
The effect of heterobifunctional crosslinkers on HEMA hydrogel modulus and toughness
Boazak Elizabeth M., Greene Vaughn K., Auguste Debra T., Lavik Erin
PLOS ONE. 2019 14(5). p.e0215895
Nature-inspired strategies for the synthesis of hydrogel actuators and their applications
Li Weijun, Guan Qingwen, Li Ming, Saiz Eduardo, Hou Xu
Progress in Polymer Science. 2023 140 p.101665
Nanostructure Evolution during Relaxation from a Large Step Strain in a Supramolecular Copolymer-Based Hydrogel: A SANS Investigation
Wiener Clinton G., Wang Chao, Liu Yun, Weiss R. A., Vogt Bryan D.
Macromolecules. 2017 50(4). p.1672
Polypeptide-affined interpenetrating hydrogels with tunable physical and mechanical properties
Oveissi Farshad, Naficy Sina, Le Thi Yen Loan, Fletcher David F., Dehghani Fariba
Biomaterials Science. 2019 7(3). p.926
Hydrogel Production Platform with Dynamic Movement Using Photo-Crosslinkable/Temperature Reversible Chitosan Polymer and Stereolithography 4D Printing Technology
Seo Jeong Wook, Shin Su Ryon, Park Yeon Joo, Bae Hojae
Tissue Engineering and Regenerative Medicine. 2020 17(4). p.423
Recent innovations in artificial skin
Low Zhi Wei Kenny, Li Zibiao, Owh Cally, Chee Pei Lin, Ye Enyi, Dan Kai, Chan Siew Yin, Young David James, Loh Xian Jun
Biomaterials Science. 2020 8(3). p.776
Formulating and Retaining the Structure of Polymerized Surfactant Phases Using a Microemulsion Curvature Framework
Choi Francis, Nirmal Ghata, Pizzardi Monica, Acosta Edgar J.
Langmuir. 2019 35(51). p.16821
A Sequential Debonding Fracture Model for Hydrogen‐Bonded Hydrogels
Xin Hai, Oveissi Farshad, Naficy Sina, Spinks Geoffrey M.
Journal of Polymer Science Part B: Polymer Physics. 2018 56(19). p.1287
Synthesis and mechanical properties of double cross-linked gelatin-graphene oxide hydrogels
Piao Yongzhe, Chen Biqiong
International Journal of Biological Macromolecules. 2017 101 p.791
Inhomogeneity Development During Slow, Irreversible Cross‐Linking of Gelatin
Souguir Hayfa, Baumberger Tristan
Macromolecular Symposia. 2013 329(1). p.41
Multiple Shape Memory, Self-Healable, and Supertough PAA-GO-Fe3+Hydrogel
Zhao Lei, Huang Jiahe, Wang Tao, Sun Weixiang, Tong Zhen
Macromolecular Materials and Engineering. 2017 302(2). p.1600359
The Ever Changing Faces of Polymer Science: The 32nd Australasian Polymer Symposium
Stenzel Martina
Australian Journal of Chemistry. 2011 64(8). p.979
Robust and self-healable nanocomposite physical hydrogel facilitated by the synergy of ternary crosslinking points in a single network
Shi Fu-Kuan, Zhong Ming, Zhang Li-Qin, Liu Xiao-Ying, Xie Xu-Ming
Journal of Materials Chemistry B. 2016 4(37). p.6221
Environmental control of crack propagation in polymer hydrogels
Baumberger Tristan, Ronsin Olivier
Mechanics of Soft Materials. 2020 2(1).
Thermo‐Moldable Nanocomposite Hydrogels
Yang Yiqing, Wang Tao, Sun Weixiang, Wang Chaoyang, Liu Xinxing, Tong Zhen
Macromolecular Materials and Engineering. 2015 300(1). p.57
Minimization and saddle-point principles for the phase-field modeling of fracture in hydrogels
Böger Lukas, Keip Marc-André, Miehe Christian
Computational Materials Science. 2017 138 p.474
Anisotropic tough poly(vinyl alcohol) hydrogels
Zhang Lin, Zhao Jing, Zhu Jintang, He Changcheng, Wang Huiliang
Soft Matter. 2012 8(40). p.10439
Rational Design of Self-Healing Tough Hydrogels: A Mini Review
Wang Wenda, Narain Ravin, Zeng Hongbo
Frontiers in Chemistry. 2018 6
Ostwald ripening for designing time‐dependent crystal hydrogels
Liu Qianwei, Fang Yuanlai, Xiong Xinhong, Xu Weiming, Cui Jiaxi
Angewandte Chemie International Edition. 2024 63(17).
Structure Optimization and Mechanical Model for Microgel-Reinforced Hydrogels with High Strength and Toughness
Hu Jian, Kurokawa Takayuki, Hiwatashi Kenta, Nakajima Tasuku, Wu Zi Liang, Liang Song Miao, Gong Jian Ping
Macromolecules. 2012 45(12). p.5218
Recent advances in 3D printing of tough hydrogels: A review
Zhang Xin Ning, Zheng Qiang, Wu Zi Liang
Composites Part B: Engineering. 2022 238 p.109895
Linear electrochemical actuators with very large strains using carbon nanotube-redox gel composites
Goswami Shailesh K., McAdam C. John, Lee Alastair M. M., Hanton Lyall R., Moratti Stephen C.
Journal of Materials Chemistry A. 2013 1(10). p.3415
Effect of First Network Topology on the Toughness of Double Network Hydrogels
Xin Hai, Saricilar Sureyya Zengin, Brown Hugh R., Whitten Philip G., Spinks Geoffrey M.
Macromolecules. 2013 46(16). p.6613
A photopolymerized composite hydrogel and surgical implanting tool for a nucleus pulposus replacement
Schmocker Andreas, Khoushabi Azadeh, Frauchiger Daniela A., Gantenbein Benjamin, Schizas Constantin, Moser Christophe, Bourban Pierre-Etienne, Pioletti Dominique P.
Biomaterials. 2016 88 p.110
A holistic review of hydrogel applications in the adsorptive removal of aqueous pollutants: Recent progress, challenges, and perspectives
Khan Musharib, Lo Irene M.C.
Water Research. 2016 106 p.259
Tough and Processable Hydrogels Based on Lignin and Hydrophilic Polyurethane
Oveissi Farshad, Naficy Sina, Le Thi Yen Loan, Fletcher David F., Dehghani Fariba
ACS Applied Bio Materials. 2018 1(6). p.2073
Super tough double network hydrogels and their application as biomaterials
Haque Md. Anamul, Kurokawa Takayuki, Gong Jian Ping
Polymer. 2012 53(9). p.1805
Biodegradable HEMA‐based hydrogels with enhanced mechanical properties
Moghadam Mohamadreza Nassajian, Pioletti Dominique P.
Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2016 104(6). p.1161

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