Hierarchical Computational Screening of Quantum Metal-Organic Framework Database to Identify Metal-Organic Frameworks for Volatile Organic-Compound Capture from Air

被引:7
作者
Ercakir, Goktug [1 ]
Aksu, Gokhan Onder [1 ]
Altintas, Cigdem [1 ]
Keskin, Seda [1 ]
机构
[1] Koc Univ, Dept Chem & Biol Engn, TR-34450 Istanbul, Turkiye
来源
ACS ENGINEERING AU | 2023年 / 3卷 / 06期
基金
欧洲研究理事会;
关键词
metal-organic framework (MOF); volatile organiccompounds (VOCs); adsorption; selectivity; molecular simulation; PETROLEUM REFINERY; INDUSTRIAL-AREA; CARBON-DIOXIDE; FORCE-FIELD; SEPARATION; ADSORPTION; CO2; EQUILIBRIA; MIXTURES; REMOVAL;
D O I
10.1021/acsengineeringau.3c00039
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The design and discovery of novel porous materials that can efficiently capture volatile organic compounds (VOCs) from air are critical to address one of the most important challenges of our world, air pollution. In this work, we studied a recently introduced metal-organic framework (MOF) database, namely, quantum MOF (QMOF) database, to unlock the potential of both experimentally synthesized and hypothetically generated structures for adsorption-based n-butane (C4H10) capture from air. Configurational Bias Monte Carlo (CBMC) simulations were used to study the adsorption of a quaternary gas mixture of N-2, O-2, Ar, and C4H10 in QMOFs for two different processes, pressure swing adsorption (PSA) and vacuum-swing adsorption (VSA). Several adsorbent performance evaluation metrics, such as C4H10 selectivity, working capacity, the adsorbent performance score, and percent regenerability, were used to identify the best adsorbent candidates, which were then further studied by molecular simulations for C4H10 capture from a more realistic seven-component air mixture consisting of N-2, O-2, Ar, C4H10, C3H8, C3H6, and C2H6. Results showed that the top five QMOFs have C4H10 selectivities between 6.3 x 10(3) and 9 x 10(3) (3.8 x 10(3) and 5 x 10(3)) at 1 bar (10 bar). Detailed analysis of the structure-performance relations showed that low/mediocre porosity (0.4-0.6) and narrow pore sizes (6-9 & Aring;) of QMOFs lead to high C4H10 selectivities. Radial distribution function analyses of the top materials revealed that C4H10 molecules tend to confine close to the organic parts of MOFs. Our results provided the first information in the literature about the VOC capture potential of a large variety and number of MOFs, which will be useful to direct the experimental efforts to the most promising adsorbent materials for C4H10 capture from air.
引用
收藏
页码:488 / 497
页数:10
相关论文
共 68 条
[1]   Data-driven design of metal-organic frameworks for wet flue gas CO2 capture [J].
Boyd, Peter G. ;
Chidambaram, Arunraj ;
Garcia-Diez, Enrique ;
Ireland, Christopher P. ;
Daff, Thomas D. ;
Bounds, Richard ;
Gladysiak, Andrzej ;
Schouwink, Pascal ;
Moosavi, Seyed Mohamad ;
Maroto-Valer, M. Mercedes ;
Reimer, Jeffrey A. ;
Navarro, Jorge A. R. ;
Woo, Tom K. ;
Garcia, Susana ;
Stylianou, Kyriakos C. ;
Smit, Berend .
NATURE, 2019, 576 (7786) :253-+
[2]   A generalized method for constructing hypothetical nanoporous materials of any net topology from graph theory [J].
Boyd, Peter G. ;
Woo, Tom K. .
CRYSTENGCOMM, 2016, 18 (21) :3777-3792
[3]   On the performance of FAU and MFI zeolites for the adsorptive removal of a series of volatile organic compounds from air using molecular simulation [J].
Calero, S. ;
Gomez-Alvarez, P. .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (39) :26451-26455
[4]   Flexible Metal-Organic Frameworks: Recent Advances and Potential Applications [J].
Chang, Ze ;
Yang, Dong-Hui ;
Xu, Jian ;
Hu, Tong-Liang ;
Bu, Xian-He .
ADVANCED MATERIALS, 2015, 27 (36) :5432-5441
[5]   Advances, Updates, and Analytics for the Computation-Ready, Experimental Metal-Organic Framework Database: CoRE MOF 2019 [J].
Chung, Yongchul G. ;
Haldoupis, Emmanuel ;
Bucior, Benjamin J. ;
Haranczyk, Maciej ;
Lee, Seulchan ;
Zhang, Hongda ;
Vogiatzis, Konstantinos D. ;
Milisavljevic, Marija ;
Ling, Sanliang ;
Camp, Jeffrey S. ;
Slater, Ben ;
Siepmann, J. Ilja ;
Sholl, David S. ;
Snurr, Randall Q. .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2019, 64 (12) :5985-5998
[6]   Computation-Ready, Experimental Metal-Organic Frameworks: A Tool To Enable High-Throughput Screening of Nanoporous Crystals [J].
Chung, Yongchul G. ;
Camp, Jeffrey ;
Haranczyk, Maciej ;
Sikora, Benjamin J. ;
Bury, Wojciech ;
Krungleviciute, Vaiva ;
Yildirim, Taner ;
Farha, Omar K. ;
Sholl, David S. ;
Snurr, Randall Q. .
CHEMISTRY OF MATERIALS, 2014, 26 (21) :6185-6192
[7]   Topologically Guided, Automated Construction of Metal-Organic Frameworks and Their Evaluation for Energy-Related Applications [J].
Colon, Yamil J. ;
Gomez-Gualdron, Diego A. ;
Snurr, Randall Q. .
CRYSTAL GROWTH & DESIGN, 2017, 17 (11) :5801-5810
[8]   Effect of Metal-Organic Framework (MOF) Database Selection on the Assessment of Gas Storage and Separation Potentials of MOFs [J].
Daglar, Hilal ;
Gulbalkan, Hasan Can ;
Avci, Gokay ;
Aksu, Gokhan Onder ;
Altundal, Omer Faruk ;
Altintas, Cigdem ;
Erucar, Ilknur ;
Keskin, Seda .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2021, 60 (14) :7828-7837
[9]   Recent advances, opportunities, and challenges in high-throughput computational screening of MOFs for gas separations [J].
Daglar, Hilal ;
Keskin, Seda .
COORDINATION CHEMISTRY REVIEWS, 2020, 422
[10]   RASPA: molecular simulation software for adsorption and diffusion in flexible nanoporous materials [J].
Dubbeldam, David ;
Calero, Sofia ;
Ellis, Donald E. ;
Snurr, Randall Q. .
MOLECULAR SIMULATION, 2016, 42 (02) :81-101