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首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Validation of experimental molecular crystal structures with dispersion-corrected density functional theory calculations
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Validation of experimental molecular crystal structures with dispersion-corrected density functional theory calculations

机译:用分散校正的密度泛函理论计算验证实验分子晶体结构

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This paper describes the validation of a dispersion-corrected density functional theory (d-DFT) method for the purpose of assessing the correctness of experimental organic crystal structures and enhancing the information content of purely experimental data. 241 experimental organic crystal structures from the August 2008 issue of Acta Cryst. Section E were energy-minimized in full, including unit-cell parameters. The differences between the experimental and the minimized crystal structures were subjected to statistical analysis. The r.m.s. Cartesian displacement excluding H atoms upon energy minimization with flexible unit-cell parameters is selected as a pertinent indicator of the correctness of a crystal structure. All 241 experimental crystal structures are reproduced very well: the average r.m.s. Cartesian displacement for the 241 crystal structures, including 16 disordered structures, is only 0.095 ? (0.084 ? for the 225 ordered structures). R.m.s. Cartesian displacements above 0.25 ? either indicate incorrect experimental crystal structures or reveal interesting structural features such as exceptionally large temperature effects, incorrectly modelled disorder or symmetry breaking H atoms. After validation, the method is applied to nine examples that are known to be ambiguous or subtly incorrect.
机译:本文描述了色散校正密度泛函理论(d-DFT)方法的验证,目的是评估实验有机晶体结构的正确性并提高纯实验数据的信息含量。 2008年8月出版的Acta Cryst的241种实验性有机晶体结构。 E部分的能量被最小化,包括单元电池参数。对实验和最小化晶体结构之间的差异进行统计分析。 r.m.s.选择具有可变晶胞参数的能量最小化时不包括H原子的笛卡尔位移作为晶体结构正确性的相关指标。所有241个实验晶体的结构都得到了很好的再现:平均r.m.s. 241个晶体结构(包括16个无序结构)的笛卡尔位移仅为0.095 ?? (对于225个有序结构,为0.084?)。 R.m.s.笛卡尔位移大于0.25?要么表明实验晶体结构不正确,要么揭示出有趣的结构特征,例如异常大的温度效应,不正确建模的无序或对称性破坏H原子。验证之后,该方法将应用于九个已知模棱两可或微妙不正确的示例。

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