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The Monte Carlo method for finding missing atoms in solving crystal structures from powder diffraction data without applying a rigid-body approximation

机译:蒙特卡罗方法,用于在不应用刚体近似的情况下从粉末衍射数据中寻找晶体结构中的缺失原子

摘要

The Monte Carlo method is applied to finding missing atoms in solving inorganic crystal structures without applying a rigid-body approximation. Whole powder patterns of α-SiO2 and Mg2SiO4 were used for testing a procedure. Four atoms among the six in the asymmetric unit of Mg2SiO4 could be found in the present analysis. The use of well-refined profile parameters enhanced the frequency of correct structure configurations in the Monte Carlo search. Utilizing structural information available for constructing a trial configuration is also considered to be important for efficiently searching the structure solution. A procedure for assignment of equivalent positions to respective atoms is presented. The method can be used as a powerful tool for finding missing atoms in a partially solved structure. A histogram of weighted reliability index in Monte Carlo calculations is very informative for evaluating the performance of the method.
机译:蒙特卡罗方法用于解决无机晶体结构中的缺失原子而无需应用刚体近似。用α-SiO2和Mg2SiO4的整个粉末图案测试程序。在当前的分析中可以发现Mg2SiO4不对称单元中六个原子中的四个原子。精细轮廓参数的使用增强了蒙特卡洛搜索中正确结构配置的频率。利用可用于构造试验构型的结构信息也被认为对于有效地搜索结构方案很重要。提出了将等效位置分配给各个原子的过程。该方法可用作查找部分溶解的结构中缺失原子的有力工具。蒙特卡洛计算中的加权可靠性指标直方图对于评估该方法的性能非常有用。

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