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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Are Quantum Chemistry Semiempirical Methods Effective to Predict Solid State Structure and Adsorption in Metal Organic Frameworks?
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Are Quantum Chemistry Semiempirical Methods Effective to Predict Solid State Structure and Adsorption in Metal Organic Frameworks?

机译:量子化学半经验方法能有效预测金属有机骨架中的固态结构和吸附吗?

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Semiempirical quantum chemistry methods have been used mainly to treat organic and biological compounds with hundreds of atoms and problems involving larger systems. However, their use in the description of solids is still quite restricted. Our aim was to show that semiempirical methods can be used to study MOP (Metal-Organic Framework) systems. The present study analyzed the predictive power of AM1, PM3, PM6, and PM7 methods with respect to the calculation of up to 72 crystal structures of MOFs, and evaluated how the use of the algorithm MOZYME, impacted the predictions. Our results showed that PM6 and PM7 methods yielded an accurate description of the geometric arrangement of these MOFs, also observing that MOZYME does not compromise the accuracy of these methods and, for larger systems (above 700 atoms), the computation time is reduced to about 50%. Supported by these results, we chose to evaluate whether the semiempirical methods can be applied to investigate gas adsorption, using a system theoretically and experimentally well investigated: Mg-MOF-74/CO2. PM6 obtained a description for the geometry of host-guest interaction and adsorption enthalpy in agreement with traditional DFT, while PM7 is in agreement with experimental results and DFT estimates with the use of dispersion corrections.
机译:半经验量子化学方法已主要用于处理具有数百个原子的有机化合物和生物化合物,并且涉及涉及较大系统的问题。但是,它们在固体描述中的使用仍然受到严格限制。我们的目的是证明半经验方法可用于研究MOP(金属有机框架)系统。本研究分析了AM1,PM3,PM6和PM7方法对多达72种MOF晶体结构的计算的预测能力,并评估了算法MOZYME的使用如何影响预测。我们的结果表明,PM6和PM7方法可以准确描述这些MOF的几何排列,还可以观察到MOZYME不会损害这些方法的准确性,并且对于较大的系统(700原子以上),计算时间减少到大约50%。在这些结果的支持下,我们选择使用理论和实验充分研究的系统:Mg-MOF-74 / CO2评估半经验方法是否可用于研究气体吸附。 PM6获得了与传统DFT一致的主体-客体相互作用和吸附焓的几何描述,而PM7与实验结果和DFT估计值(使用色散校正)一致。

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