Cation Characterization and CO2 Capture in Li+-Exchanged Metal-Organic Frameworks: From First-Principles Modeling to Molecular Simulation

被引:39
作者
Babarao, R. [1 ]
Jiang, J. W. [1 ]
机构
[1] Natl Univ Singapore, Dept Chem & Biomol Engn, Singapore 117576, Singapore
关键词
ZEOLITIC IMIDAZOLATE FRAMEWORKS; MONTE-CARLO-SIMULATION; CARBON-DIOXIDE; PORE-SIZE; H-2; ADSORPTION; SEPARATION; HYDROGEN; DIFFUSION; MIXTURES; BINARY;
D O I
10.1021/ie100214a
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
We report a computational study for cation characterization and CO2 capture in Li+-exchanged metal-organic frameworks (Li+-MOFs). Density functional theory is adopted to optimize cation locations and evaluate atomic charges, and molecular simulation is subsequently used to examine the separation of CO2/H-2 and CO2/N-2 mixtures for pre- and post-combustion CO2 capture. The cations are observed to locate near the carboxylic O-donors of metal clusters. Specifically, H+ ions in dehydrated Li+-MOF form covalent bonds with the O-donors, and H3O+ ions in hydrated Li+-MOF form hydrogen bonds with the O-donors. CO2 is overwhelmingly adsorbed over H-2 and N-2 in both dehydrated and hydrated Li+-MOFs. Adsorption occurs preferentially near the cations and metal clusters, which possess strong electrostatic potentials, and then in the square channels. At ambient condition, the selectivity is approximately 550 for CO2/H-2 mixture and 60 for CO2/N-2 mixture, higher than that in nonionic MOFs and other nanoporous adsorbents. The charges of framework and cations have a significant effect on the selectivity, which is found to decrease by 1 order of magnitude by switching off the charges. The hydration of cations in Li+-MOF leads to a reduced free volume and consequently a lower extent of adsorption.
引用
收藏
页码:62 / 68
页数:7
相关论文
共 50 条
[1]   Monte Carlo simulation of single- and binary-component adsorption of CO2, N2, and H2 in zeolite Na-4A [J].
Akten, ED ;
Siriwardane, R ;
Sholl, DS .
ENERGY & FUELS, 2003, 17 (04) :977-983
[2]   High and Selective CO2 Uptake in a Cobalt Adeninate Metal-Organic Framework Exhibiting Pyrimidine- and Amino-Decorated Pores [J].
An, Jihyun ;
Geib, Steven J. ;
Rosi, Nathaniel L. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (01) :38-+
[3]  
[Anonymous], 2008, MAT STUD 4 3
[4]   Storage and separation of CO2 and CH4 in silicalite, C168 schwarzite, and IRMOF-1:: A comparative study from monte carlo simulation [J].
Babarao, Ravichandar ;
Hu, Zhongqiao ;
Jiang, Jianwen ;
Chempath, Shaji ;
Sandler, Stanley I. .
LANGMUIR, 2007, 23 (02) :659-666
[5]   Unprecedentedly High Selective Adsorption of Gas Mixtures in rho Zeolite-like Metal-Organic Framework: A Molecular Simulation Study [J].
Babarao, Ravichandar ;
Jiang, Jianwen .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (32) :11417-11425
[6]   Molecular Simulations for Adsorptive Separation of CO2/CH4 Mixture in Metal-Exposed, Catenated, and Charged Metal-Organic Frameworks [J].
Babarao, Ravichandar ;
Jiang, Jianwen ;
Sandler, Stanley I. .
LANGMUIR, 2009, 25 (09) :5239-5247
[7]   Exceptionally high CO2 storage in covalent-organic frameworks: Atomistic simulation study [J].
Babarao, Ravichandar ;
Jiang, Jianwen .
ENERGY & ENVIRONMENTAL SCIENCE, 2008, 1 (01) :139-143
[8]   Separation of CO2 from CH4 using mixed-ligand metal-organic frameworks [J].
Bae, Youn-Sang ;
Mulfort, Karen L. ;
Frost, Houston ;
Ryan, Patrick ;
Punnathanam, Sudeep ;
Broadbelt, Linda J. ;
Hupp, Joseph T. ;
Snurr, Randall Q. .
LANGMUIR, 2008, 24 (16) :8592-8598
[9]   Enhancement of CO2/N2 selectivity in a metal-organic framework by cavity modification [J].
Bae, Youn-Sang ;
Farha, Omar K. ;
Hupp, Joseph T. ;
Snurr, Randall Q. .
JOURNAL OF MATERIALS CHEMISTRY, 2009, 19 (15) :2131-2134
[10]   Control of Pore Size and Functionality in Isoreticular Zeolitic Imidazolate Frameworks and their Carbon Dioxide Selective Capture Properties [J].
Banerjee, Rahul ;
Furukawa, Hiroyasu ;
Britt, David ;
Knobler, Carolyn ;
O'Keeffe, Michael ;
Yaghi, Omar M. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (11) :3875-+