Syntheses and crystal structures of four cyanide-bridged trinuclear iron(III)–copper(II)–iron(III) complexes exhibiting abnormal antiferromagnetic coupling

Author:

Ji Yujie,Zhang Lifang,Zhao Yun,Ni Zhonghai

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Metals and Alloys,Inorganic Chemistry

Reference33 articles.

1. Shen HY, Bu WM, Gao EQ, Liao DZ, Jiang ZH, Yan SP, Wang GL (2000) New alternating ferro- and antiferromagnetic one-dimensional complexes synthesis, characterization, crystal structure, and magnetic properties of [M(4,4′-dimethylbipyridine)(N3)2] n [M = Cu(II), Mn(II), Ni(II), Fe(II)]. Inorg Chem 39:396

2. Enrique C, José MDV, Mustapha G, Raikko K, José MM, Aarne P (2000) Structure and magnetic properties of two cyanide-bridged one dimensional M–CuII (M = FeIII or FeII) bimetallic assemblies from ferricyanide and CuN4 2+ (N4 = 1,4,8,11-tetraazacyclotetradecane and N,N′-bis(2-pyridylmethylene)-1,3-propanediamine) building blocks. J Chem Soc Dalton Trans 505

3. Lim JH, Yoon JH, Choi SY, Ryu DW, Koh EK, Hong CS (2011) Cyano-bridged pentanuclear and honeycomblike MIIICuII (M = Fe, Cr) bimetallic assemblies: structural variations modulated by side groups of macrocyclic ligands and magnetic properties. Inorg Chem 50:1749

4. Reger DL, Pascui AE, Smith MD, Jezierska J, Ozarowski A (2012) Dinuclear complexes containing linear M–F–M [M = Mn(II), Fe(II), Co(II), Ni(II), Cu(II), Zn(II), Cd(II)] bridges: trends in structures, antiferromagnetic superexchange interactions, and spectroscopic properties. Inorg Chem 51:11820

5. Seth P, Figuerola A, Jover J, Ruiz E, Ghosh A (2014) Ferro- to antiferromagnetic crossover angle in diphenoxido- and carboxylato-bridged trinuclear Ni 2 II −MnII complexes: experimental observations and theoretical rationalization. Inorg Chem 53:9296

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