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Polymorphism of LiAg

机译:LiAg的多态性

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A phase transition from the cubic CsCl-type structure (Pm-3m space group) into a tetragonal UPb-type structure (I4]/amd) is observed for the LiAg binary compound at ambient conditions. The crystal structure of the tetragonal modification of the LiAg binary compound was solved by direct methods in SHELXS on the base of structure factors which were extracted from a powder diffraction pattern and refined by SHELXL and the Rietveld method (a = 3.9605(1), c = 8.2825(2) A, Bragg R-factor = 4.81, Rf-factor = 4.87). Elevated temperatures and/or a small Li-excess versus the equimolar composition favour the cubic structure whereas ambient and lower temperatures and/or a small Li-deficiency stabilize the tetragonal structure. This reconstructive transition is reversible but proceeds slowly.
机译:在环境条件下,对于LiAg二元化合物,观察到从立方CsCl型结构(Pm-3m空间基团)到四方UPb型结构(I4] / amd)的相变。 LiAg二元化合物的四方变体的晶体结构在SHELXS中通过直接方法解析,基于从粉末衍射图中提取并通过SHELXL和Rietveld方法精制的结构因子(a = 3.9605(1),c = 8.2825(2)A,布拉格R因子= 4.81,Rf因子= 4.87)。相对于等摩尔组成,升高的温度和/或小的锂过量有利于立方结构,而环境温度和较低的温度和/或小的锂缺乏使四方结构稳定。这种重建过渡是可逆的,但进展缓慢。

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