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Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors
Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors
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Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors
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Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors
Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors

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Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors
Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors
Journal Article

Cyanido-bridged one-dimensional systems assembled from ReIVCI4(CN)22- and Mn(cyclam)2+ (M = Ni, Cu) precursors

2012
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Overview
Three new cyanido-bridged heterometallic ReIVNin and ReIVCu one-dimensional systems were synthesized and extensively characterized both structurally and magnetically. Single-crystal X-ray diffraction analysis revealed that these compounds display a common topology, with chains composed of alternating [RetVc14(CN)2]2- and [Mn(cyclam)]2+ (M = Ni in 1, Cu in 2) or [Cull(N,N'-dimethylcyclam)]2+ (in 3) building units. Two different chain orientations with a tilt angle of ca. 51° to 55° are present in the crystal packing of these compounds. The magnetic susceptibility measurements suggest the presence of intrachain ferromagnetic interactions between the S = 3/2 ReTM centers and the 3d metal ions: S = 1 Ni1I or S = 1/2 CuII. At low temperature, a three-dimensional ordered magnetic phase induced by interchain antiferromagnetic interactions (antiferromagnetic for 1 and 2; canted antiferromagnetic for 3) is detected for the three compounds.