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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Benchmarking density functional theory predictions of framework structures and properties in a chemically diverse test set of metal-organic frameworks
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Benchmarking density functional theory predictions of framework structures and properties in a chemically diverse test set of metal-organic frameworks

机译:在金属-有机骨架化学变化测试集中对骨架结构和性质进行基准密度泛函理论预测

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摘要

A test set of chemically and topologically diverse Metal-Organic Frameworks (MOFs) with high accuracy experimentally derived crystallographic structure data was compiled. The test set was used to benchmark the performance of Density Functional Theory (DFT) functionals (M06L, PBE, PW91, PBE-D2, PBE-D3, and vdW-DF2) for predicting lattice parameters, unit cell volume, bonded parameters and pore descriptors. On average PBE-D2, PBE-D3, and vdW-DF2 predict more accurate structures, but all functionals predicted pore diameters within 0.5 angstrom of the experimental diameter for every MOF in the test set. The test set was also used to assess the variance in performance of DFT functionals for elastic properties and atomic partial charges. The DFT predicted elastic properties such as minimum shear modulus and Young's modulus can differ by an average of 3 and 9 GPa for rigid MOFs such as those in the test set. The partial charges calculated by vdW-DF2 deviate the most from other functionals while there is no significant difference between the partial charges calculated by M06L, PBE, PW91, PBE-D2 and PBE-D3 for the MOFs in the test set. We find that while there are differences in the magnitude of the properties predicted by the various functionals, these discrepancies are small compared to the accuracy necessary for most practical applications.
机译:编写了一组化学和拓扑结构多样的金属有机骨架(MOF)的测试集,这些实验具有高精度的实验得出的晶体结构数据。该测试集用于对密度泛函理论(DFT)的功能(M06L,PBE,PW91,PBE-D2,PBE-D3和vdW-DF2)的性能进行基准测试,以预测晶格参数,单位晶胞体积,键合参数和孔描述符。平均而言,对于测试集中的每个MOF,PBE-D2,PBE-D3和vdW-DF2都可以预测更精确的结构,但是所有功能预测的孔径都在实验直径的0.5埃内。该测试仪还用于评估DFT功能的弹性性能和原子部分电荷性能的差异。 DFT预测的弹性特性(例如最小剪切模量和杨氏模量)对于刚性MOF(例如测试集中的MOF)的平均值可能相差3 GPa和9 GPa。对于测试集中的MOF,vdW-DF2计算出的部分电荷与其他功能的偏差最大,而M06L,PBE,PW91,PBE-D2和PBE-D3计算出的部分电荷之间没有显着差异。我们发现,尽管各种功能所预测的属性的大小存在差异,但与大多数实际应用所需的精度相比,这些差异很小。

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