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纳米尺度下分子自旋态在自旋交叉材料中间相的自容纳。

Nanoscale self-hosting of molecular spin-states in the intermediate phase of a spin-crossover material.

机构信息

LCC (Laboratoire de Chimie de Coordination) UPR-CNRS 8241, 205, route de Narbonne, 31077 Toulouse, France.

出版信息

Chemistry. 2010 Dec 17;16(47):14060-8. doi: 10.1002/chem.201001264.

Abstract

A new spin-crossover (SC) complex [Fe(II)H(2)L(2-Me)]AsF(6) has been synthesized, in which H(2)L(2-Me) denotes the chirogenic hexadentate N(6) Schiff-base ligand bis{[(2-methylimidazol-4-yl)methylidene]-3-aminopropyl}ethylenediamine. This complex has revealed a rich variety of phases during its two-step thermal crossover, as well as photoinduced spin-state switching. A high-symmetry high-spin (HS, S=2) phase, a low-symmetry low-spin (LS, S=0) phase, an intermediate phase characterized by an unprecedented lozenge pattern of 12 predominantly HS molecular crystallographic sites confining 18 predominantly LS molecular crystallographic sites, and a photoinduced low-symmetry HS phase have been accurately evidenced by temperature-dependent magnetic susceptibility, Mössbauer spectroscopy, and crystallographic studies. This variety of phases illustrates the multi-stability of this system, which results from coupling between the electronic states and structural instabilities.

摘要

一种新的自旋交叉(SC)配合物[Fe(II)H(2)L(2-Me)][AsF(6)](2)已经被合成,其中 H(2)L(2-Me)表示手性六齿配位体 N(6)席夫碱双{[(2-甲基咪唑-4-基)亚甲基]-3-氨丙基}乙二胺。该配合物在其两步热交叉过程中以及光诱导自旋态转换中表现出了丰富的相态。一个高对称高自旋(HS,S=2)相、一个低对称低自旋(LS,S=0)相、一个以前所未有的菱形图案为特征的中间相,由 12 个主要是 HS 分子晶体学位点限制 18 个主要是 LS 分子晶体学位点,以及一个光诱导的低对称 HS 相已经通过温度依赖的磁化率、穆斯堡尔光谱和晶体学研究得到了准确的证明。这种多样的相态说明了该系统的多稳定性,这是电子态和结构不稳定性之间耦合的结果。

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