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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Accurate Prediction of Methane Adsorption in a Metal-Organic Framework with Unsaturated Metal Sites by Direct Implementation of an ab Initio Derived Potential Energy Surface in GCMC Simulation
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Accurate Prediction of Methane Adsorption in a Metal-Organic Framework with Unsaturated Metal Sites by Direct Implementation of an ab Initio Derived Potential Energy Surface in GCMC Simulation

机译:通过在GCMC模拟中直接实现从头算得出的势能面准确预测具有不饱和金属位点的金属有机框架中的甲烷吸附

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摘要

Whereas grand-canonical Monte Carlo (GCMC) simulations based on generic force fields provide good predictions of adsorption isotherms in metal—organic frameworks (MOFs), especially at higher temperature, they fail to correctly describe the adsorption mechanism in MOFs with coordinatively unsaturated sites (cus's) at low temperatures, even for nonpolar fluids such as methane. To address this problem, we directly implemented the potential energy surface calculated by a hybrid DFT/ab inito method in the GCMC simulations using the adsorption of methane on CuBTC as an example. A comparison with previously published in situ experiments shows that our approach not only quantitatively predicts adsorption isotherms for a wide range of temperatures and pressures but also provides the correct description of the adsorption mechanism, including adsorption on the cus's. We also show that care must be taken when selecting the ab initio method to be coupled with GCMC simulations to obtain accurate predictions,
机译:尽管基于通用力场的大经典蒙特卡洛(GCMC)模拟可以很好地预测金属-有机骨架(MOF)中的吸附等温线,尤其是在较高温度下,但它们无法正确描述具有不饱和位点的MOF中的吸附机理低温),即使对于非极性流体(例如甲烷)也是如此。为了解决这个问题,我们直接在GCMC模拟中实现了通过混合DFT / ab inito方法计算的势能面,以甲烷在CuBTC上的吸附为例。与以前发表的原位实验的比较表明,我们的方法不仅可以定量地预测在很宽的温度和压力范围内的吸附等温线,而且可以正确描述吸附机理,包括在客体上的吸附。我们还表明,在选择从头算方法与GCMC模拟结合使用以获得准确的预测时,必须格外小心,

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