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首页> 外文期刊>Frontiers in Chemistry >Extended x-ray absorption fine structure of ZrW2O8: Theory vs experiment
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Extended x-ray absorption fine structure of ZrW2O8: Theory vs experiment

机译:ZrW2O8的扩展x射线吸收精细结构:理论与实验

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摘要

Extended x-ray absorption fine structure (EXAFS) is well suited for investigations of structure and disorder of complex materials. Recently, experimental measurements and analysis of EXAFS have been carried out to elucidate the mechanisms responsible for the negative thermal expansion (NTE) in zirconium tungstate (ZrW2O8). In contrast to previous work suggesting that transverse O-displacements are largely responsible, the EXAFS analysis suggested that correlated rotations and translations of octahedra and tetrahedra within the structure are a major source. In an effort to resolve this controversy, we have carried out {it ab initio} calculations of the structure, lattice vibrations, and EXAFS of ZrW2O8 based on real-space multiple-scattering calculations using the FEFF9 code and auxiliary calculations of structure and Debye-Waller factors. We find that the theoretical simulations are consistent with observed EXAFS, and show that both of the above mechanisms contribute to the dynamical structure of ZrW2O8.
机译:扩展的X射线吸收精细结构(EXAFS)非常适合用于研究复杂材料的结构和无序性。最近,已经对EXAFS进行了实验测量和分析,以阐明造成钨酸锆(ZrW2O8)负热膨胀(NTE)的机理。与以前的工作表明横向O位移起主要作用的相反,EXAFS分析表明,八面体和四面体的相关旋转和平移是结构的主要来源。为了解决这个争议,我们使用FEFF9代码基于实空间多次散射计算以及结构和Debye的辅助计算,对ZrW2O8的结构,晶格振动和EXAFS进行了{ it ab initio}计算。 -华勒因素。我们发现理论模拟与观察到的EXAFS一致,并表明上述两种机制都有助于ZrW2O8的动力学结构。

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