首页> 外文期刊>International Journal of Quantum Chemistry >The order of the palladium and germanium atoms in the germanides LnPdGe (Ln = La-Nd, Sm, Gd, Tb) and the new compound Yb3Pd4Ge4
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The order of the palladium and germanium atoms in the germanides LnPdGe (Ln = La-Nd, Sm, Gd, Tb) and the new compound Yb3Pd4Ge4

机译:锗化物LnPdGe(Ln = La-Nd,Sm,Gd,Tb)和新化合物Yb3Pd4Ge4中钯和锗原子的顺序

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摘要

In previous publications about the seven ternary equiatomic title compounds only the KHg2, (CeCu2)-type subcells with statistical distribution of the palladium and germanium atoms were reported. However, weak superstructure reflections resulting from an ordered distribution of these atoms are observed in the Guinier powder patterns. A. CaCuGe (alpha -YbAuGe)-type structure with a tripled subcell b axis was established from the powder patterns for the compounds LaPdGe, CePdGe, PrPdGe, NdPdGe, SmPdGe, and the low-temperature (alpha) modification of GdPdGe. In addition, this structure was refined from single-crystal X-ray diffractometer data of CePdGe: Pnma, 2190.2(9) pm, b = 448.4(2) pm, c = 767.3(3) pm, R = 0.019 for 396 structure factors and 56 variable parameters. The refinement of this structure for alpha -GdPdGe resulted in a = 2112.3(3) pm, b = 440.5(1) pm, c = 757.7(1) pm, R = 0.022 for 372 F values and 56 variables. The high-temperature (beta) modification of GdPdGe has a YPdSi-type superstructure with a doubled b axis of the subcell: Pmmn, a = 430.3(I)pm, b = 1409.9(2) pm, c = 757.6(1) pm, R = 0.019 for 470 F values and 40 variables. In spite of the long-range order of the palladium and germanium atoms established for the superstructures, the refinements of the occupancy parameters suggest small amounts of Pd/Ge disorder for all compounds. The crystal chemistry of these compounds is briefly discussed. The new germanide Yb,Pd,Ge, was prepared from the elements in a sealed tantalum tube in a high-frequency furnace and its structure was refined from single-crystal X-ray data: Gd,Cu,Ge, type, Immm, 410.7(1) pm, b = 707,0(1) pm, c = 1372.2(3) pm, R = 0.027 for 667 F values and 23 variables. (C) 2000 Academic Press. [References: 42]
机译:在先前关于七个三元等原子标题化合物的出版物中,仅报道了具有统计分布的钯和锗原子的KHg2(CeCu2)型子电池。但是,在吉尼尔(Guinier)粉末图案中观察到由这些原子的有序分布导致的微弱的上层结构反射。由化合物LaPdGe,CePdGe,PrPdGe,NdPdGe,SmPdGe的粉末图案以及GdPdGe的低温(α)修饰,建立了具有三倍子单元b轴的CaCuGe(α-YbAuGe)型结构。此外,该结构还根据CePdGe的单晶X射线衍射仪数据进行了精修:Pnma,2190.2(9)pm,b = 448.4(2)pm,c = 767.3(3)pm,R = 0.019(针对396个结构因子)和56个可变参数。对α-GdPdGe的这种结构的优化导致372 F值和56个变量的a = 2112.3(3)pm,b = 440.5(1)pm,c = 757.7(1)pm,R = 0.022。 GdPdGe的高温(β)修饰具有YPdSi型上层结构,其子电池的b轴加倍:Pmmn,a = 430.3(I)pm,b = 1409.9(2)pm,c = 757.6(1)pm对于470 F值和40个变量,R = 0.019。尽管为上层结构建立了钯和锗原子的远距离顺序,但占用参数的细化表明所有化合物的Pd / Ge紊乱量均较小。简要讨论了这些化合物的晶体化学。新型锗化物Yb,Pd,Ge是由高频炉中的密封钽管中的元素制备的,其结构是根据单晶X射线数据精炼而成的:Gd,Cu,Ge,类型,Immm,410.7 (667)F值和23个变量的(1)pm,b = 707,0(1)pm,c = 1372.2(3)pm,R = 0.027。 (C)2000年学术出版社。 [参考:42]

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