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Five- and six-coordinated complexes of cobalt(II) with 2,2',2'-terpyridyl: Unusual structure and magnetism

CM Harris, TN Lockyer, RL Martin, HRH Patil and E Sinn
22(10) pp.2105 - 2116


62 articles found in Crossref database.

Magnetic Properties of Coordination and Organometallic Transition Metal Compounds (1979)
König E., König G.
An unusual discontinuity in the thermal spin transition in [Co(terpy)2][BF4]2
Kilner Colin A., Halcrow Malcolm A.
Dalton Transactions. 2010 39(38). p.9008
Spin-crossover in cobalt(II) compounds containing terpyridine and its derivatives
Hayami Shinya, Komatsu Yasuka, Shimizu Tetsuya, Kamihata Hidenobu, Lee Young Hoon
Coordination Chemistry Reviews. 2011 255(17-18). p.1981
Synthesis and Spin State of the Cobalt(II) Complexes with Substituted 2,6-Bis(pyrazol-3-yl)pyridine Ligands
Pavlov A. A., Belov A. S., Savkina S. A., Polezhaev A. V., Aleshin D. Yu., Novikov V. V., Nelyubina Yu. V.
Russian Journal of Coordination Chemistry. 2018 44(8). p.489
[CoII(4-terpyridone)2]X2:  A Novel Cobalt(II) Spin Crossover System [4-Terpyridone = 2,6-Bis(2-pyridyl)-4(1H)-pyridone]
Gaspar Ana B., Muñoz M. Carmen, Niel Virginie, Real José Antonio
Inorganic Chemistry. 2001 40(1). p.9
Photochemical Behavior of Azobenzene-Conjugated CoII, CoIII, and FeII Bis(terpyridine) Complexes
Yutaka Tomona, Mori Ichiro, Kurihara Masato, Tamai Naoto, Nishihara Hiroshi
Inorganic Chemistry. 2003 42(20). p.6306
Di[2,6-bis(5-phenylpyrazol-3-yl)pyridine]Co(II): an old coordination mode for a novel supramolecular assembly
Scicluna Todd R., Fraser Benjamin H., Gorham Nicole T., MacLellan Jonathan G., Massi Massimiliano, Skelton Brian W., St Pierre Timothy G., Woodward Robert C.
CrystEngComm. 2010 12(11). p.3422
Terdentate NNN Donor Ligands Derived from 2,6-Diacetylpyridine
Alyea E. C., Merrell P. H.
Synthesis and Reactivity in Inorganic and Metal-Organic Chemistry. 1974 4(6). p.535
Binuclear metal(II) (M = Co, Cu) complexes of 3,5-bi{N,N-bis[2-(diethylamino)ethyl]aminomethyl}pyrazole
Kamiusuki Toshiro, Ōkawa Hisashi, Kitaura Eiji, Inoue Keishi, Kida Sigeo
Inorganica Chimica Acta. 1991 179(1). p.139
1-D Cobalt(II) Spin Transition Compound with Strong Interchain Interaction:  [Co(pyterpy)Cl2]·X
Hayami Shinya, Hashiguchi Koichiro, Juhász Gergely, Ohba Masaaki, Ōkawa Hisashi, Maeda Yonezo, Kato Kenichi, Osaka Keiichi, Takata Masaki, Inoue Katsuya
Inorganic Chemistry. 2004 43(14). p.4124
Cobalt Complexes with “Click”-Derived Functional Tripodal Ligands: Spin Crossover and Coordination Ambivalence
Schweinfurth David, Weisser Fritz, Bubrin Denis, Bogani Lapo, Sarkar Biprajit
Inorganic Chemistry. 2011 50(13). p.6114
Temperature induced spin crossover behaviour in mononuclear cobalt(II) bis terpyridine complexes
Raj M. Venkata Nikhil, Bhar Kishalay, Khan Tanveer A., Jain Surbhi, Perdih Franc, Mitra Partha, Sharma Anuj K.
MRS Advances. 2019 4(28-29). p.1597
Spin‐Crossover Materials (2013)
Hayami Shinya
Cobalt(II) and Copper(II) Complexes of (2-Acetylpyridine)-(5,6-Diphenyl-[1,2,4]Triazin-3-YL) Hydrazone
Kandil Samir S., El-Dissouky Ali, Ali Gamila Y.
Journal of Coordination Chemistry. 2004 57(2). p.105
Synthesis of a Redox-Active NNP-Type Pincer Ligand and Its Application to Electrocatalytic CO2 Reduction With First-Row Transition Metal Complexes
Talukdar Kallol, Issa Asala, Jurss Jonah W.
Frontiers in Chemistry. 2019 7
Magnetic exchange in polynuclear metal complexes
Sinn E.
Coordination Chemistry Reviews. 1970 5(3). p.313
Toward Higher Nuclearity: Tetranuclear Cobalt(II) Metallogrid Exhibiting Spin Crossover
Wu Shu-Qi, Wang Yi-Tong, Cui Ai-Li, Kou Hui-Zhong
Inorganic Chemistry. 2014 53(5). p.2613
Towards accurate estimates of the spin-state energetics of spin-crossover complexes within density functional theory: a comparative case study of cobalt(ii) complexes
Vargas Alfredo, Krivokapic Itana, Hauser Andreas, Lawson Daku Latévi Max
Physical Chemistry Chemical Physics. 2013 15(11). p.3752
Spin State of the Iron(II) and Cobalt(II) 2,6-Di(5-Amino-1H-Pyrazol-3-yl)pyridine Complexes in Solution and in Crystal
Pavlov A. A., Nikovskii I. A., Polezhaev A. V., Aleshin D. Yu., Melnikova E. K., Pankratova Ya. A., Nelyubina Yu. V.
Russian Journal of Coordination Chemistry. 2019 45(6). p.402
Lattice water molecules tuned spin-crossover for an iron(ii) complex with thermal hysteresis
Luo Yang-Hui, Yang Li-Jing, Liu Qing-Ling, Ling Yang, Wang Wei, Sun Bai-Wang
Dalton Trans.. 2014 43(44). p.16937
Coordination of strong field bidentate and tridentate 1,2,4- triazine derivatives
Goodwin H.A., Smith F.E.
Inorganica Chimica Acta. 1973 7 p.541
Spin‐Crossover Materials (2013)
Murray Keith S.
pH-dependent electrocatalysis for proton reduction by bis(2,2′:6′,2″-terpyridine) cobalt(II) complex embedded in Nafion® membrane
Abe Toshiyuki, Kaneko Masao
Journal of Molecular Catalysis A: Chemical. 2001 169(1-2). p.177
Field induced single ion magnet behavior in CoII complexes in a distorted square pyramidal geometry
Dey Atanu, Ali Junaid, Moorthy Shruti, Gonzalez Jessica Flores, Pointillart Fabrice, Singh Saurabh Kumar, Chandrasekhar Vadapalli
Dalton Transactions. 2023 52(41). p.14807
Self-Assembled Multilayers of Transition-Metal−Terpyridinyl Complexes; Formation, and Characterization
Kosbar Laura, Srinivasan Charan, Afzali Ali, Graham Teresita, Copel Matt, Krusin-Elbaum Lia
Langmuir. 2006 22(18). p.7631
The influence of geometry and donor-atom set on the spin state of five-coordinate cobalt (II) and nickel (II) complexes
Sacconi Luigi
Coordination Chemistry Reviews. 1972 8(4). p.351
Environmental control of solution speciation in cobalt(ii) 2,2′:6′,2′′-terpyridine complexes: anion and solvent dependence
Constable Edwin C., Harris Kate, Housecroft Catherine E., Neuburger Markus, Zampese Jennifer A.
Dalton Transactions. 2011 40(43). p.11441
Temperature-Independent Rate of Electron-Transfer between a Cobalt(II) and a Ruthenium(III) of Doublet Electronic Configuration
Torieda Hiroaki, Yoshimura Akio, Nozaki Koichi, Sakai Satomi, Ohno Takeshi
The Journal of Physical Chemistry A. 2002 106(46). p.11034
Influence of ligand field on magnetic anisotropy in a family of pentacoordinate CoII complexes
Acharya Joydev, Sarkar Arup, Kumar Pawan, Kumar Vierandra, Flores Gonzalez Jessica, Cador Olivier, Pointillart Fabrice, Rajaraman Gopalan, Chandrasekhar Vadapalli
Dalton Transactions. 2020 49(15). p.4785
Spin State Modulation in Cobalt(II) Terpyridine Complexes by Co-Crystallization with 1,3,5-Triiodo-2,4,6-trifluorobenzene
Kobayashi Fumiya, Iwaya Kyoko, Zenno Hikaru, Nakamura Masaaki, Li Feng, Hayami Shinya
Bulletin of the Chemical Society of Japan. 2021 94(1). p.158
(1986)
Constable E.C.
Magnetic Properties of Coordination and Organometallic Transition Metal Compounds (1979)
König E., König G.
Spin crossover in Co(ii) metallorods – replacing aliphatic tails by aromatic
Lee Young Hoon, Won Mi Seon, Harrowfield Jack M., Kawata Satoshi, Hayami Shinya, Kim Yang
Dalton Transactions. 2013 42(32). p.11507
Spin Crossover in Double Salts Containing Six- and Four-Coordinate Cobalt(II) Ions
Palion-Gazda Joanna, Machura Barbara, Kruszynski Rafal, Grancha Thais, Moliner Nicolás, Lloret Francesc, Julve Miguel
Inorganic Chemistry. 2017 56(11). p.6281
Controlling Spin Switching with Anionic Supramolecular Frameworks
Pfrunder Michael C., Whittaker Jacob J., Parsons Simon, Moubaraki Boujemaa, Murray Keith S., Moggach Stephen A., Sharma Neeraj, Micallef Aaron S., Clegg Jack K., McMurtrie John C.
Chemistry of Materials. 2020 32(7). p.3229
A Redox‐Active Bridging Ligand to Promote Spin Delocalization, High‐Spin Complexes, and Magnetic Multi‐Switchability
Ma Xiaozhou, Suturina Elizaveta A., De Siddhartha, Négrier Philippe, Rouzières Mathieu, Clérac Rodolphe, Dechambenoit Pierre
Angewandte Chemie International Edition. 2018 57(26). p.7841
New Oxalate-Bridged CrIII−MnII Polymeric Network Incorporating a Spin-Crossover [Co(terpy)2]2+ Cation
Kou Hui-Zhong, Sato Osamu
Inorganic Chemistry. 2007 46(23). p.9513
Systematic Study of Spin Crossover and Structure in [Co(terpyRX)2](Y)2 Systems (terpyRX = 4′-alkoxy-2,2′:6′,2′′-terpyridine, X = 4, 8, 12, Y = BF4−, ClO4−, PF6−, BPh4−)
Nielsen Pia, Toftlund Hans, Bond Andrew D., Boas John F., Pilbrow John R., Hanson Graeme R., Noble Christopher, Riley Mark J., Neville Suzanne M., Moubaraki Boujemaa, Murray Keith S.
Inorganic Chemistry. 2009 48(15). p.7033
Ferrocene-appended ligands for use in spin crossover-redox “hybrid” complexes of iron(ii) and cobalt(ii)
Scott Hayley S., Gartshore Christopher J., Guo Si-Xuan, Moubaraki Boujemaa, Bond Alan M., Batten Stuart R., Murray Keith S.
Dalton Trans.. 2014 43(40). p.15212
A Redox‐Active Bridging Ligand to Promote Spin Delocalization, High‐Spin Complexes, and Magnetic Multi‐Switchability
Ma Xiaozhou, Suturina Elizaveta A., De Siddhartha, Négrier Philippe, Rouzières Mathieu, Clérac Rodolphe, Dechambenoit Pierre
Angewandte Chemie. 2018 130(26). p.7967
Five-coordination in iron(II); cobalt(II) and nickel(II) complexes
Morassi R., Bertini I., Sacconi L.
Coordination Chemistry Reviews. 1973 11(4). p.343
Magnetic Properties of Coordination and Organometallic Transition Metal Compounds (1979)
König E., König G.
Spin equilibrium in five-co-ordinate Lewis-base adducts of cobalt(II) Schiff-base complexes with a S2N3ligand environment. Molecular and crystal structure of [CoL4(mim)] at 293 and 103 k [H2L4=N,N′-bis(5-mercapto-3-methyl-1-phenylpyrazol-4-ylmethylene)-o-phenylenediamine, mim =N-methylimidazole]
Nivorozhkin Alexander L., Toftlund Hans, Nielsen Max
J. Chem. Soc., Dalton Trans.. 1994 (3). p.361
Cyanometallic charge engineering in spin crossover metal–organic frameworks
Lyu Bang-Heng, Xie Kai-Ping, Cui Wen, Chen Yan-Cong, Chen Guan-Xi, Wu Si-Guo, Tong Ming-Liang
Chemical Communications. 2024 60(32). p.4318
Dynamics of cobalt(II) spin-equilibrium complexes
Beattie James K., Binstead Robert A., Kelso M.Terry, Del Favero Patricia, Dewey T.Gregory, Turner Douglas H.
Inorganica Chimica Acta. 1995 235(1-2). p.245
When electron exchange is chemical exchange–assignment of1H NMR spectra of paramagnetic cobalt(ii)-2,2′:6′,2″-terpyridine complexes
Chow Hoi Shan, Constable Edwin C., Housecroft Catherine E., Kulicke Klaus J., Tao Yaqiu
Dalton Trans.. 2005 (2). p.236
Anion Effects on Spin Crossover Systems: From Supramolecular Chemistry to Magnetism
Zhao Sheng‐Ze, Zhou Hua‐Wei, Qin Chun‐Yan, Zhang Hao‐Zhe, Li Yong‐Hua, Yamashita Masahiro, Wang Shi
Chemistry – A European Journal. 2023 29(44).
Ambidentate bonding and electrochemical implications of pincer-type pyridylidene amide ligands in complexes of nickel, cobalt and zinc
Melle Philipp, Ségaud Nathalie, Albrecht Martin
Dalton Transactions. 2020 49(36). p.12662
Factors Influencing the Structural and Magnetic Properties of Octahedral Cobalt(II) and Iron(II) Complexes of Terdentate N3 Schiff Base Ligands
Handel Robyn W., Willms Holger, Jameson Geoffrey B., Berry Kevin J., Moubaraki Boujemaa, Murray Keith S., Brooker Sally
European Journal of Inorganic Chemistry. 2010 2010(21). p.3317
Oxotris(oxalato)niobate(V) as counterion in cobalt(II) spin-crossover systems
Oliveira Willian X.C., Pereira Cynthia L.M., Pinheiro Carlos B., Krambrock Klaus, Grancha Thais, Moliner Nícolas, Lloret Francesc, Julve Miguel
Polyhedron. 2016 117 p.710
A Pair of CoII Supramolecular Isomers Based on Flexible Bis-Pyridyl-Bis-Amide and Angular Dicarboxylate Ligands
Chhetri Pradhumna Mahat, Wu Ming-Hao, Hsieh Chou-Ting, Yang Xiang-Kai, Wu Chen-Ming, Yang En-Che, Wang Chih-Chieh, Chen Jhy-Der
Molecules. 2020 25(1). p.201
Structure:function relationships in molecular spin-crossover complexes
Halcrow Malcolm A.
Chemical Society Reviews. 2011 40(7). p.4119
Spin Crossover in Transition Metal Compounds II (2004)
Goodwin Harold A.
Conductance of a Cobalt(II) Terpyridine Complex Based Molecular Transistor:  A Computational Analysis
Perrine Trilisa M., Dunietz Barry D.
The Journal of Physical Chemistry A. 2008 112(10). p.2043
Mössbauer effect study on low-spin 1A1 ⇌ high spin 5T2 transition in [Fe(2-pic)3]Cl2
Sorai M., Ensling J., Hasselbach K.M., Gütlich P.
Chemical Physics. 1977 20(2). p.197
Spin Crossover and Field‐Induced Single‐Molecule Magnet Behaviour in Co(II) Complexes Based on Terpyridine with Tetrathiafulvalene Analogues
Tiaouinine Siham, Flores Gonzalez Jessica, Lefeuvre Bertrand, Guizouarn Thierry, Cordier Marie, Dorcet Vincent, Kaboub Lakehmici, Cador Olivier, Pointillart Fabrice
European Journal of Inorganic Chemistry. 2021 2021(24). p.2374
The use of conductivity measurements in organic solvents for the characterisation of coordination compounds
Geary W.J.
Coordination Chemistry Reviews. 1971 7(1). p.81
Iron(II) and Cobalt(II) Complexes with 2,6-Bis(1,4-Diphenyl-5-Hydroxy-1H-Pyrazol-3-yl)pyridine: Synthesis, Structures, and Spin States
Nikovskii I. A., Polezhaev A. V., Aleshin D. Yu., Mel’nikova E. K., Dorovatovskii P. V., Nelyubina Yu. V.
Russian Journal of Coordination Chemistry. 2020 46(5). p.317
Structure of a linear unsymmetrical trinuclear cobalt(II) complex with a localized COII–COIIbond: dichlorotetrakis[µ3-bis(2-pyridyl)amido]tricobalt(II)
Yang En-Che, Cheng Ming-Chu, Tsai Ming-Shih, Peng Shie-Ming
J. Chem. Soc., Chem. Commun.. 1994 (20). p.2377
Spin crossover phenomena in long chain alkylated complexes
Akiyoshi Ryohei, Ohtani Ryo, Lindoy Leonard F., Hayami Shinya
Dalton Transactions. 2021 50(15). p.5065
Ab initio calculation of magnetic anisotropy and thermal spin transition in the variable temperature crystal conformations of [Co(terpy)2]2+
Nath Moromi, Joshi Shalini, Mishra Sabyashachi
Physical Chemistry Chemical Physics. 2024 26(21). p.15405
ChemInform Abstract: FUENF‐ UND SECHSFACH KOORDINIERTE KOMPLEXE VON KOBALT(II) MIT 2,2′,2′′‐TERPYRIDYL, UNGEWOEHNLICHE STRUKTUR UND MAGNETISMUS
HARRIS C. M., LOCKYER T. N., MARTIN R. L., PATIL H. R. H., SINN E., STEWART I. M.
Chemischer Informationsdienst. Organische Chemie. 1970 1(1).

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