Register      Login
Environmental Chemistry Environmental Chemistry Society
Environmental problems - Chemical approaches

Articles citing this paper

Comparing plant–insect trophic transfer of Cu from lab-synthesised nano-Cu(OH)2 with a commercial nano-Cu(OH)2 fungicide formulation

Jieran Li A , Sónia Rodrigues B , Olga V. Tsyusko A C and Jason M. Unrine https://orcid.org/0000-0003-3012-5261 A C D
+ Author Affiliations
- Author Affiliations

A Department of Toxicology and Cancer Biology, University of Kentucky, Lexington, KY 40536, USA.

B Centro de Estudos do Ambiente e do Mar (CESAM) and Department of Chemistry, University of Aveiro, Aveiro 3810-193, Portugal.

C Department of Plant and Soil Sciences, University of Kentucky, Lexington, KY 40546, USA.

D Corresponding author. Email: jason.unrine@uky.edu

Environmental Chemistry 16(6) 411-418 https://doi.org/10.1071/EN19011
Submitted: 15 January 2019  Accepted: 2 March 2019   Published: 29 March 2019



21 articles found in Crossref database.

Differential Reactivity of Copper- and Gold-Based Nanomaterials Controls Their Seasonal Biogeochemical Cycling and Fate in a Freshwater Wetland Mesocosm
Avellan Astrid, Simonin Marie, Anderson Steven M., Geitner Nicholas K., Bossa Nathan, Spielman-Sun Eleanor, Bernhardt Emily S., Castellon Benjamin T., Colman Benjamin P., Cooper Jane L., Ho Mengchi, Hochella Michael F., Hsu-Kim Heileen, Inoue Sayako, King Ryan S., Laughton Stephanie, Matson Cole W., Perrotta Brittany G., Richardson Curtis J., Unrine Jason M., Wiesner Mark R., Lowry Gregory V.
Environmental Science & Technology. 2020 54(3). p.1533
Long-term effects of Cu(OH)2 nanopesticide exposure on soil microbial communities
Peixoto Sara, Henriques Isabel, Loureiro Susana
Environmental Pollution. 2021 269 p.116113
Investigation into the trophic transfer and acute toxicity of phosphorus-based nano-agromaterials in Caenorhabditis elegans
Priyam Ayushi, Afonso Luis O.B., Schultz Aaron G., Singh Pushplata Prasad
NanoImpact. 2021 23 p.100327
Nanoformulations for Sustainable Agriculture and Environmental Risk Mitigation (2023)
Kaushani Kotuwegoda Guruge, Priyadarshana Gayan
Neurotoxicity of the Cu(OH)2 Nanopesticide through Perturbing Multiple Neurotransmitter Pathways in Developing Zebrafish
Chen Siying, Qin Yingju, Ye Xiaolin, Liu Jian, Yan Xiliang, Zhou Li, Wang Xiaohong, Martyniuk Christopher J., Yan Bing
Environmental Science & Technology. 2023 57(48). p.19407
Terrestrial organisms react differently to nano and non-nano Cu(OH)2 forms
Morgado Rui G., Pavlaki Maria D., Soares Amadeu M.V.M., Loureiro Susana
Science of The Total Environment. 2022 807 p.150679
Responses of soil microbiome to copper-based materials (nano and bulk) for agricultural applications: An indoor-mesocosm experiment
Peixoto Sara, Morgado Rui G., Prodana Marija, Cardoso Diogo N., Malheiro Catarina, Neves Joana, Santos Cátia, Khodaparast Zahra, Pavlaki Maria D., Rodrigues Sandra, Rodrigues Sónia M., Henriques Isabel, Loureiro Susana
NanoImpact. 2024 34 p.100506
Environmental risks and the potential benefits of nanopesticides: a review
Xu Zhenlan, Tang Tao, Lin Qin, Yu Jianzhong, Zhang Changpeng, Zhao Xueping, Kah Melanie, Li Lingxiangyu
Environmental Chemistry Letters. 2022 20(3). p.2097
Influence of copper treatment on bioaccumulation, survival, behavior, and fecundity in the fruit fly Drosophila melanogaster: Toxicity of copper oxide nanoparticles differ from dissolved copper
Budiyanti Dwi Sari, Moeller Morten Erik, Thit Amalie
Environmental Toxicology and Pharmacology. 2022 92 p.103852
Nano-Enabled Sustainable and Precision Agriculture (2023)
Borgatta Jaya, White Jason C., Youssef Naglaa
Metabolomic and bioenergetic responses of human hepatocellular carcinoma cells following exposure to commercial copper hydroxide nanopesticide
Li Xiaoyu, Qin Yingju, Kong Long, Yan Xiliang, Zhang Wei, Martyniuk Christopher J., Wang Xiaohong, Yan Bing
Environmental Science: Nano. 2022 9(2). p.589
Environmental hazards of WELGRO® Cu+Zn: A nano-enabled fertilizer
Gomes Susana I.L., Chidiamassamba Sekerani B., Trindade Tito, Scott-Fordsmand Janeck J., Amorim Mónica J.B.
Environmental Pollution. 2023 336 p.122469
Inorganic Nanopesticides and Nanofertilizers (2022)
Gomes Diego Genuário, Pieretti Joana Claudio, Lourenço Isabella Martins, Oliveira Halley Caixeta, Seabra Amedea Barozzi
Copper Nanostructures: Next-Generation of Agrochemicals for Sustainable Agroecosystems (2022)
Jampílek Josef, Kráľová Katarína
Environmental hazards of nanopesticides to non-target soil species - commercial nanoformulation versus its active substance (Karate Zeon® and lambda-cyhalothrin)
Gomes Susana I.L., Chidiamassamba Sekerani B., Scott-Fordsmand Janeck J., Amorim Mónica J.B.
Science of The Total Environment. 2023 891 p.164664
Nano-Enable Materials Promoting Sustainability and Resilience in Modern Agriculture
Ur Rahim Hafeez, Qaswar Muhammad, Uddin Misbah, Giannini Cinzia, Herrera Maria Lidia, Rea Giuseppina
Nanomaterials. 2021 11(8). p.2068
Conventional agrochemicals towards nano-biopesticides: an overview on recent advances
Abdollahdokht Danial, Gao Yunhao, Faramarz Sanaz, Poustforoosh Alireza, Abbasi Mojtaba, Asadikaram Gholamreza, Nematollahi Mohammad Hadi
Chemical and Biological Technologies in Agriculture. 2022 9(1).
Are nano-pesticides really meant for cleaner production? An overview on recent developments, benefits, environmental hazards and future prospectives
Rani Naincy, Duhan Anil, Pal Ajay, Kumari Parveen, Beniwal Ravi Kumar, Verma Deepika, Goyat Ankit, Singh Rishabh
Journal of Cleaner Production. 2023 411 p.137232
Comparative Environmental Impact Assessment of Copper-Based Nanopesticides and Conventional Pesticides
Liu Peiyuan, Ren Zhongming, Ding Wenhui, Kong Deqiang, Hermanowicz Slav W., Huang Yuxiong
ACS Agricultural Science & Technology. 2023 3(7). p.593
Efficacy-Associated Cost Analysis of Copper-Based Nanopesticides for Tomato Disease Control
Liu Peiyuan, Yang Minliang, Hermanowicz Slav W., Huang Yuxiong
ACS Agricultural Science & Technology. 2022 2(4). p.796
Nanofungicides (2024)
Abd-Elsalam Kamel A.

Committee on Publication Ethics


Abstract Supplementary MaterialSupplementary Material (355 KB) Export Citation Get Permission