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Ab initio total energy calculation of the dynamical stability of noble metal carbides

机译:从头算起总能量计算贵金属碳化物的动力学稳定性

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The structural, electronic, vibrational and thermodynamical properties of transition metal carbides RuC, RhC, PdC and AgC are investigated using the plane-wave pseudopotentials method within the generalized gradient approximation (GGA) in the frame of density functional theory (DFT). There is a good agreement between present theoretical and available experimental theoretical data in the case of ground state properties such as lattice parameter and bulk modulus. The electronic band structure of these compounds show that all compounds except RuC in zinc blende phase are metallic in nature. RuC in zinc blende phase is semiconducting in nature with an indirect band gap. The phonon properties of RhC, PdC and AgC are investigated for the first time. The phonon frequencies in the phonon dispersion curves are positive throughout the Brillouin zone for zinc blende RuC and AgC and rocksalt RhC and PdC indicating dynamical stability for these compounds in the said phases. Temperature variation of thermodynamical properties for noble metal carbides are calculated and discussed.
机译:在密度泛函理论(DFT)的框架内,在广义梯度近似(GGA)中使用平面波伪势方法研究了过渡金属碳化物RuC,RhC,PdC和AgC的结构,电子,振动和热力学性质。在基态属性(例如晶格参数和体积模量)的情况下,当前的理论数据和可用的实验理论数据之间有很好的一致性。这些化合物的电子带结构表明,在锌共混相中除RuC以外的所有化合物本质上都是金属。锌共混相中的RuC本质上是半导体,具有间接带隙。首次研究了RhC,PdC和AgC的声子性质。声子频散曲线中的声子频率在整个布里渊区中对于掺锌的RuC和AgC以及岩盐RhC和PdC都是正的,表明这些化合物在所述相中的动力学稳定性。计算并讨论了贵金属碳化物热力学性质的温度变化。

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