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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Accelerating applications of metal-organic frameworks for gas adsorption and separation by computational screening of materials
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Accelerating applications of metal-organic frameworks for gas adsorption and separation by computational screening of materials

机译:通过材料的计算筛选,加快金属有机骨架在气体吸附和分离中的应用

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摘要

The selection of metal-organic frameworks (MOFs) for gas adsorption and separation has become a significant challenge over the past decade because of the large number of new structures reported every year. We applied a multiscale computational approach to screen existing MOFs for CO _2/N _2 separation. Pore characteristics of 1163 MOFs were analyzed by the method developed by Haldoupis, Nair, and Sholl (Haldoupis, E.; Nair, S.; Sholl, D. S. J. Am. Chem. Soc.2010, 132, 7528) using a simple steric model. On the basis of the pore size analysis, 359 MOFs were examined by classical molecular simulations. Adsorption and diffusion properties were computed using grand canonical Monte Carlo (GCMC) and molecular dynamics (MD) simulations, respectively. These molecular simulations were used to assess which materials hold the greatest promise as membrane materials for CO _2/N _2 separations. Finally, density functional theory (DFT) calculations were performed to provide preliminary information on the dynamic framework motion of selected MOFs.
机译:在过去的十年中,由于每年报告的新结构数量众多,因此选择用于气体吸附和分离的金属有机框架(MOF)已成为一项重大挑战。我们应用了一种多尺度计算方法来筛选现有的MOF以进行CO _2 / N _2分离。通过Haldoupis,Nair和Sholl(Haldoupis,E .; Nair,S .; Sholl,D.S. J. Am。Chem。Soc.2010,132,7528)开发的方法,使用简单的空间模型分析了1163个MOF的孔隙特征。在孔径分析的基础上,通过经典分子模拟检查了359个MOF。吸附和扩散性能分别使用大正则蒙特卡罗(GCMC)和分子动力学(MD)模拟进行计算。这些分子模拟用于评估哪种材料最有希望作为膜材料用于CO _2 / N _2分离。最后,执行密度泛函理论(DFT)计算以提供有关选定MOF的动态框架运动的初步信息。

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