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TiSb₂ 和 VSb₂ 中的化学键:量子化学与实验研究

Chemical bonding in TiSb(2) and VSb(2): a quantum chemical and experimental study.

作者信息

Armbrüster Marc, Schnelle Walter, Schwarz Ulrich, Grin Yuri

机构信息

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

出版信息

Inorg Chem. 2007 Aug 6;46(16):6319-28. doi: 10.1021/ic070284p. Epub 2007 Jul 11.

Abstract

The chemical bonding in the isostructural intermetallic compounds TiSb2 and VSb2, crystallizing in the CuAl2 type, was investigated by means of quantum chemical calculations, particularly the electron localization function (ELF), as well as by Raman spectroscopy, Hall effect and conductivity measurements on oriented single crystals, and high-pressure X-ray powder diffraction. The homogeneity ranges of the compounds were determined by powder X-ray diffraction, WDXS, and DSC measurements. TiSb2 exhibits no significant homogeneity range, while VSb2 shows a small homogeneity range of approximately 0.3 at. %. According to the ELF calculations, the Sb atoms form dumbbells via a two-center two-electron bond, while the T atoms (T = Ti, V) build up chains along the crystallographic c-axis. Both building units are connected by covalent T-Sb-T three-center bonds, thus forming a three-dimensional network. The strength of the bonds involving Sb was determined by fitting a force constant model to the vibrational mode frequencies observed by polarized Raman measurements on oriented single crystals. The resulting bond order of the Sb2 dumbbells is 1, while the strength of the three-center bonds resembles a bond order of 1.5. The weak pressure dependence of the c/a ratio confirms the slightly different bonding picture in TiSb2 compared to that in CuAl2. Electrical transport measurements show the presence of free charge carriers, as well as a metal-like temperature dependence of the electrical resistivity.

摘要

采用量子化学计算方法,特别是电子定域函数(ELF),以及对取向单晶进行拉曼光谱、霍尔效应和电导率测量,还有高压X射线粉末衍射,对以CuAl2型结晶的同结构金属间化合物TiSb2和VSb2中的化学键进行了研究。通过粉末X射线衍射、波长色散X射线光谱(WDXS)和差示扫描量热法(DSC)测量确定了化合物的均匀性范围。TiSb2没有明显的均匀性范围,而VSb2显示出约0.3原子百分比的小均匀性范围。根据ELF计算,Sb原子通过双中心双电子键形成哑铃状,而T原子(T = Ti、V)沿晶体学c轴形成链。这两个结构单元通过共价T-Sb-T三中心键相连,从而形成三维网络。通过将力常数模型拟合到对取向单晶进行偏振拉曼测量所观察到的振动模式频率,确定了涉及Sb的键的强度。所得Sb2哑铃状结构的键级为1,而三中心键的强度类似于1.5的键级。c/a比的弱压力依赖性证实了TiSb2与CuAl2相比,其键合情况略有不同。电输运测量表明存在自由电荷载流子,以及电阻率呈现类金属的温度依赖性。

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