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Работ: 80
Работа: Efficient storage and separation of methane using the metal–organic frameworks M2(m-dobdc)(M = Fe, Co, Ni, and Cu): a first-principles study
Generalized Gradient Approximation Made Simple
John P. Perdew, Kieron Burke, Matthias Ernzerhof
Статья1996Цитирований: 153ABISpecial points for Brillouin-zone integrations
Hendrik J. Monkhorst, J.D. Pack
Статья1976Цитирований: 60ABISemiempirical GGA‐type density functional constructed with a long‐range dispersion correction
Статья2006Цитирований: 42ABIAn all-electron numerical method for solving the local density functional for polyatomic molecules
Статья1990Цитирований: 7ABIProgress and potential of metal-organic frameworks (MOFs) for gas storage and separation: A review
Tao Jia, Yifan Gu, Fengting Li
Обзорная статья2022Цитирований: 3ABIEvaluating metal–organic frameworks for natural gas storage
Jarad A. Mason, Mike Veenstra, Jeffrey R. Long
Статья2013Цитирований: 2ABIMetal–Organic Frameworks for Separation
Xiang Zhao, Yanxiang Wang, Dong‐Sheng Li +2
Обзорная статья2018Цитирований: 2ABICa-decorated novel boron sheet: A potential hydrogen storage medium
Jianchuan Wang, Yong Du, Lixian Sun
Статья2016Цитирований: 2ABICa coated B40 fullerene: A promising material for CO2 storage and separation
Mehdi D. Esrafili, Parisasadat Mousavian
Статья2021Цитирований: 2ABICo-adsorption of hydrogen and methane can improve the energy storage capacity of Mn-modified graphene
Jialin Sun, Jiaming Ju, Yuhong Chen +3
Статья2023Цитирований: 2ABIAmbient pressure storage of high-density methane in nanoporous carbon coated with graphene
Shuwen Wang, Fernando Vallejos-Burgos, Ayumi Furuse +13
Статья2025Цитирований: 2ABI