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首页> 外文期刊>Zeitschrift fur Kristallographie: International Journal for Structural, Physical, and Chemical Aspects of Crystalline Materials >Polymorphic forms of Rb2Te: in-situ high-pressure DAC X-ray diffraction investigations and structure modelling with CASTEP
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Polymorphic forms of Rb2Te: in-situ high-pressure DAC X-ray diffraction investigations and structure modelling with CASTEP

机译:Rb2Te的多晶型形式:原位高压DAC X射线衍射研究和CASTEP结构建模

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摘要

We report on high pressure X-ray diffraction investigations of Rb2Te in diamond anvil cells DAC (MoKalpha1 radiation, Rietveld refinement of the diffraction diagrams), which resulted in a polymorphic transformation series for the compound Rb2Te from an anti-fluorite type into an anti-cotunnite type (transition pressure 0.5 GPa) and further on into a Ni2In type structure (transition pressure 1.5 GPa). Among the compounds of the composition A(2)B Rb2Te has up to now an exceptional position in so far, as this sequence of polymorphic forms is also observed as a high-temperature transformation series. Geometry optimizations on the basis of DFT calculations with the program CASTEP confirmed the phase transitions observed experimentally. Since the anti-cotunnite and the Ni2In type are structurally related - between both structure types there is a group-subgroup relation with the Ni2In type as aristo-type (1st Landau criterion) - the transition between the two types can be characterized as continuous in real space coordinates. According to experimental data as well as results of the CASTEP calculations the phase transition takes place with a discontinuity in the volume versus pressure curve. The geometry optimizations give direct insight in the continuous mechanism of the transition and offer the possibility to compare intermediate structural arrangements with other structures to be discussed in this context, as e.g. the post-cotunnite or the Co2Si structure-type.
机译:我们报告了在金刚石砧座DAC中对Rb2Te进行高压X射线衍射研究(MoKalpha1辐射,衍射图的Rietveld精细化),从而导致化合物Rb2Te从抗萤石类型转变为抗萤石的多态转化系列。钙铝石型(转变压力为0.5 GPa),然后进一步转变为Ni2In型结构(转变压力为1.5 GPa)。迄今为止,在组成为A(2)B的化合物中,Rb2Te到目前为止一直处于特殊位置,因为这种多晶型形式的序列也被视为高温转化序列。基于CASTEP程序进行DFT计算的几何优化证实了实验观察到的相变。由于抗-石和Ni2In类型在结构上相关-两种结构类型之间都存在Ni2In类型为亚里士多德型的族群-亚群关系(第一Landau准则)-两种类型之间的过渡可以表征为连续真实空间坐标。根据实验数据以及CASTEP计算的结果,相变发生在体积与压力曲线不连续的情况下。几何优化使人们对过渡的连续机理有直接的了解,并提供了将中间结构布置与在此情况下将要讨论的其他结构进行比较的可能性。后共tun石或Co2Si结构类型。

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