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首页> 外文期刊>Journal of Physics. Condensed Matter >Partial structural functions of molten copper halides CuX (X = Br, I) estimated from the anomalous x-ray scattering measurements
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Partial structural functions of molten copper halides CuX (X = Br, I) estimated from the anomalous x-ray scattering measurements

机译:由异常X射线散射测量估算的熔融卤化铜CuX(X = Br,I)的部分结构函数

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The three partial structural functions of molten copper halides CuX (X = Br, I) have been estimated from anomalous x-ray scattering (AXS) measurements coupled with the reverse Monte Carlo (RMC) simulation technique; For both cases of molten CuBr and CuI, the Cu-Cu partial structure factor of a(CuCu)(Q) was found to be rather structureless and the closest Cu-Cu distance was significantly smaller than that for X-X, indicating like-ion penetration into the first unlike-ion coordination shell, similar to the molten CuCl case. We then suggest a disordered close packing of anions where Cu ions meander so as to take a strongly disordered distribution by penetrating through the tetrahedral holes. [References: 13]
机译:熔融铜卤化物CuX的三个部分结构函数(X = Br,I)是通过反X射线散射(AXS)测量和反向蒙特卡洛(RMC)模拟技术估算得到的;对于熔融CuBr和CuI的两种情况,发现a(CuCu)(Q)的Cu-Cu部分结构因子相当无结构,并且最接近的Cu-Cu距离显着小于XX,这表明类似离子的渗透进入第一个异离子配位壳,类似于熔融的CuCl壳。然后,我们提出了一种无序紧密堆积的阴离子,其中Cu离子蜿蜒而行,从而通过穿透四面体孔而具有很强的无序分布。 [参考:13]

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