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首页> 外文期刊>Chemical engineering journal >Towards rapid computational screening of metal-organic frameworks for carbon dioxide capture: Calculation of framework charges via charge equilibration
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Towards rapid computational screening of metal-organic frameworks for carbon dioxide capture: Calculation of framework charges via charge equilibration

机译:迈向用于捕获二氧化碳的金属有机骨架的快速计算筛选:通过电荷平衡计算骨架电荷

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摘要

Metal-organic frameworks are promising materials for the capture of carbon dioxide. Finding the best metal-organic frameworks from the vast number of possibilities could be greatly accelerated by efficient computational screening techniques. We have previously reported an effective screening protocol for predicting carbon dioxide adsorption performance in metal-organic frameworks that uses grand canonical Monte Carlo simulations of gas adsorption. In the model, molecules interact via van der Waals and electrostatic interactions with each other and the framework. However, the method requires single-point quantum mechanics calculations for the estimation of atomic partial charges. In this study we investigate the feasibility of a modified protocol that bypasses the computationally expensive quantum mechanics calculations by applying instead the charge equilibration method. We compare the results of both protocols directly on fourteen metal-organic frameworks and conclude that the new protocol is sufficiently accurate for screening purposes and is significantly faster.
机译:金属有机框架是用于捕获二氧化碳的有前途的材料。通过高效的计算筛选技术,可以极大地加快从众多可能性中寻找最佳金属有机骨架的速度。我们先前已经报告了一种有效的筛选方案,用于预测金属-有机框架中的二氧化碳吸附性能,该方法使用了气体吸附的大范式蒙特卡洛模拟。在该模型中,分子通过范德华相互作用,并且彼此之间以及与骨架之间发生静电相互作用。但是,该方法需要单点量子力学计算来估算原子部分电荷。在这项研究中,我们研究了通过使用电荷平衡方法来绕过计算昂贵的量子力学计算的改进协议的可行性。我们直接在14种金属有机框架上比较了两种方案的结果,得出的结论是,新方案对于筛选目的足够准确,并且速度更快。

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