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Chiral cyanide-bridged 1D Fe~Ⅲ-Mn~Ⅲ heterobimetallic chains: Synthesis, structures and magnetic properties 被引量:4
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作者 YAO MinXia ZHENG Qi +2 位作者 GAO Feng LI YiZhi ZUO JingLin 《Science China Chemistry》 SCIE EI CAS 2012年第6期1022-1030,共9页
Two couples of enantiomerically pure chiral cyano-bridged heterobimetallic one-dimensional (1D) chain complexes: [Mn((R,R)-Salphen)Fe(Tp)(CN)3],, (1) and [Mn((S,S)-Salphen)Te(Tp)(CN)3]n (2) (Salphen = N,N'-l,2-dip... Two couples of enantiomerically pure chiral cyano-bridged heterobimetallic one-dimensional (1D) chain complexes: [Mn((R,R)-Salphen)Fe(Tp)(CN)3],, (1) and [Mn((S,S)-Salphen)Te(Tp)(CN)3]n (2) (Salphen = N,N'-l,2-diphenylethylenebis (salicylideneiminato) dianion, Tp = tris(pyrazolyl) hydroborate), [Mn((R,R)-Salphen)Fe(Tp*)(CN)3·2H2O],, (3) and [Mn((S,S)-Salphen)Fe(Tp*)(CN)3.2H20],, (4) (Tp* = hydridotris (3,5-dimethylpyrazol-l-yl) borate), have been successfully synthesized by the reactions of MnⅢ schiff-base complexes with the tricyanometalate building block, [(Lxp)Fe(CN)3]- (Lyp = Tp or Tp*). All complexes are made up of neutral cyano-bridged zigzag double chains with (-Fe-CN-Mn-NC-),, as the repeating unit. Circular dichroism (CD) spectra confirm the enantiomeric nature of the optically active complexes. Magnetic studies demonstrate that ferromagnetic interactions are operative in these complexes. The ferromagnetic couplings become weak in the chains with the bending of the Mn-N=C angles. 展开更多
关键词 chiral complexes cyanide ligands chain compounds crystal structures magnetic properties
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