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氰桥[CoFe]链中的三线态转变。

Three-way switching in a cyanide-bridged [CoFe] chain.

机构信息

Graduate School of Pure and Applied Sciences, Department of Chemistry, University of Tsukuba, Tennodai 1-1-1, Tsukuba 305-8571, Japan.

出版信息

Nat Chem. 2012 Nov;4(11):921-6. doi: 10.1038/nchem.1455. Epub 2012 Sep 16.

Abstract

Bistable compounds that exist in two interchangeable phases under identical conditions can act as switches under external stimuli. Among such switchable materials, coordination complexes have energy levels (or phases) that are determined by the electronic states of their constituent metal ions and ligands. They can exhibit multiple bistabilities and hold promise in the search for multifaceted materials that display different properties in different phases, accessible through the application of contrasting external stimuli. Molecular systems that exhibit both thermo- and photoinduced magnetic bistabilities are excellent candidates for such systems. Here we describe a cyanide-bridged [CoFe] one-dimensional chiral coordination polymer that displays both magnetic and electric bistabilities in the same temperature range. Both the electric and magnetic switching probably arise from the same electron-transfer coupled spin-transition phenomenon, which enables the reversible conversion between an insulating diamagnetic phase and either a semiconducting paramagnetic (thermoinduced) or a type of ferromagnetic single-chain magnet (photoinduced) state.

摘要

在相同条件下存在两种可互换相的双稳定化合物可以在外部刺激下充当开关。在这些可切换材料中,配位化合物的能级(或相)由其组成金属离子和配体的电子态决定。它们可以表现出多种双稳态,并有望在寻找多面材料方面取得进展,这些材料在不同相具有不同的性质,可通过施加对比鲜明的外部刺激来实现。同时表现出热诱导和光诱导磁双稳性的分子系统是此类系统的理想候选者。在这里,我们描述了一种氰桥联[CoFe]一维手性配位聚合物,它在相同温度范围内显示出磁和电双稳性。电和磁的切换可能都源于相同的电子转移耦合自旋转变现象,该现象使绝缘反磁性相与半导体顺磁(热诱导)或铁磁单链磁体(光诱导)状态之间的可逆转换成为可能。

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