Continuum Model of Gas Uptake for Inhomogeneous Fluids
SCIE
SCOPUS
- Title
- Continuum Model of Gas Uptake for Inhomogeneous Fluids
- Authors
- IHM, YUNG OK; Cooper, Valentino R.; Vlcek, Lukas; Canepa, Pieremanuele; Thonhauser, Timo; Shim, Ji Hoon; Morris, James R.
- Date Issued
- 2017-07
- Publisher
- AMER CHEMICAL SOC
- Abstract
- We describe a continuum model of gas uptake for inhomogeneous fluids (CMGIF) and use it to predict fluid adsorption in porous materials directly from gas-substrate interaction energies determined byfirst-principles calculations or accurate effective force fields. The method uses perturbation approach to correct bulk fluid interactions for local inhomogeneities caused by gas substrate interactions, and predicts local pressure and density of the adsorbed gas. The accuracy,and ihnitations of the model are tested by,comparison with the results of grand canonical Morit Carlo simulations of hydrogen uptake in metal organic frameworks (MOFs). We show that the :approach provides accurate predictions at : -room-temperature and at low temperatures for less strongly interacting,materials. The speed of the CMGIF method makes it a premising candidate for high throughput materials discovery in connection with existing databases of nanoporcins materials.
- Keywords
- METAL-ORGANIC FRAMEWORKS; NANOPOROUS CARBONS; ADSORPTION; SIMULATIONS; HYDROGEN; CLUSTERS; CAPACITY
- URI
- https://oasis.postech.ac.kr/handle/2014.oak/50403
- DOI
- 10.1021/acs.jpcc.7b04834
- ISSN
- 1932-7447
- Article Type
- Article
- Citation
- JOURNAL OF PHYSICAL CHEMISTRY C, vol. 121, no. 33, page. 17625 - 17632, 2017-07
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