| Literature DB >> 28558151 |
Lei Sun1, Li Yang1,2, Ya-Dong Zhang3, Qi Shi3, Rui-Feng Lu3, Wei-Qiao Deng1.
Abstract
An accurate van der Waals force field (VDW FF) was derived from highly precise quantum mechanical (QM) calculations. Small molecular clusters were used to explore van der Waals interactions between gas molecules and porous materials. The parameters of the accurate van der Waals force field were determined by QM calculations. To validate the force field, the prediction results from the VDW FF were compared with standard FFs, such as UFF, Dreiding, Pcff, and Compass. The results from the VDW FF were in excellent agreement with the experimental measurements. This force field can be applied to the prediction of the gas density (H2 , CO2 , C2 H4 , CH4 , N2 , O2 ) and adsorption performance inside porous materials, such as covalent organic frameworks (COFs), zeolites and metal organic frameworks (MOFs), consisting of H, B, N, C, O, S, Si, Al, Zn, Mg, Ni, and Co. This work provides a solid basis for studying gas adsorption in porous materials.Entities:
Keywords: Morse potential; force field; gas adsorption; quantum mechanical calculations; van der Waals force
Year: 2017 PMID: 28558151 DOI: 10.1002/jcc.24832
Source DB: PubMed Journal: J Comput Chem ISSN: 0192-8651 Impact factor: 3.376