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首页> 外文期刊>Journal of Solid State Chemistry >Probing the structure of complex solids using a distributed computing approach - Applications in zeolite science
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Probing the structure of complex solids using a distributed computing approach - Applications in zeolite science

机译:使用分布式计算方法探测复杂固体的结构-沸石科学中的应用

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We demonstrate the viability of distributed computing techniques employing idle desktop computers in investigating complex structural problems in solids. Through the use of a combined Monte Carlo and energy minimisation method, we show how a large parameter space can be effectively scanned. By controlling the generation and running of different configurations through a database engine, we are able to not only analyse the data on the fly but also direct the running of jobs and the algorithms for generating further structures. As an exemplar case, we probe the distribution of Al and extra-framework cations in the structure of the zeolite Mordenite. We compare our computed unit cells with experiment and find that whilst there is excellent correlation between computed and experimentally derived unit cell volumes, cation positioning and short-range Al ordering (i.e. near neighbour environment), there remains some discrepancy in the distribution of Al throughout the framework. We also show that stabilitystructure correlations only become apparent once a sufficiently large sample is used.
机译:我们展示了利用闲置台式计算机研究固体中复杂结构问题的分布式计算技术的可行性。通过结合使用蒙特卡洛和能量最小化方法,我们展示了如何有效地扫描较大的参数空间。通过数据库引擎控制不同配置的生成和运行,我们不仅能够动态分析数据,而且还可以指导作业的运行以及生成进一步结构的算法。作为示例,我们探讨了沸石和丝光沸石结构中Al和骨架外阳离子的分布。我们将计算出的晶胞与实验进行了比较,发现尽管计算出的晶胞体积和实验得出的晶胞体积,阳离子位置和短程Al有序性(即近邻环境)之间具有极好的相关性,但整个Al的分布仍存在差异框架。我们还表明,只有使用足够大的样本,稳定性结构的相关性才会变得明显。

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