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CuAl(2) 族化合物中的化学键:MnSn(2)、FeSn(2) 和 CoSn(2)。

Chemical bonding in compounds of the CuAl(2) family: MnSn(2), FeSn(2) and CoSn(2).

机构信息

Max-Planck-Institut für Chemische Physik fester Stoffe, Nöthnitzer Str. 40, 01187 Dresden, Germany.

出版信息

Chemistry. 2010 Sep 10;16(34):10357-65. doi: 10.1002/chem.201001473.

Abstract

A model for the chemical bonding in the isostructural intermetallic compounds MnSn(2), FeSn(2) and CoSn(2), crystallising in the CuAl(2)-type structure, is developed. The description is based on quantum-chemical calculations applying the electron localisability approach as well as on experimental results obtained from Raman spectroscopy, Hall effect and electrical resistivity measurements on oriented single crystals. The analysis of the chemical bonding reveals four different covalent interactions leading to the formation of interpenetrating 6(3) nets of tin and chains of transition-metal atoms T (T=Mn, Fe or Co) along [001], which are interconnected by three-centre bonds. Polarised Raman measurements on oriented single crystals allowed the determination of the bond strengths, resulting in a bond order of 0.5 within the 6(3) nets, while the three-centre interactions show bond orders of up to 1. Measurements show a metal-like temperature dependence of the resistivity. A comparison of the results with the bonding models obtained for the isostructural compounds CuAl(2), TiSb(2) and VSb(2) reveals the influence of the main-group element on the connectivity pattern.

摘要

建立了同构金属间化合物 MnSn(2)、FeSn(2) 和 CoSn(2)的化学键模型,它们具有 CuAl(2)型结构。这种描述是基于量子化学计算,应用电子局域化方法以及从拉曼光谱、霍尔效应和取向单晶电阻率测量中获得的实验结果。对化学键的分析揭示了四种不同的共价相互作用,导致锡的互穿 6(3)网和沿[001]方向的过渡金属原子 T(T=Mn、Fe 或 Co)链的形成,这些链由三中心键连接。对取向单晶的偏振拉曼测量允许确定键强度,导致 6(3)网内的键序为 0.5,而三中心相互作用显示出高达 1 的键序。测量表明电阻率具有金属样的温度依赖性。将结果与同构化合物 CuAl(2)、TiSb(2)和 VSb(2)的键合模型进行比较,揭示了主族元素对连接模式的影响。

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