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A New Era of Modeling MOF-Based Membranes: Cooperation of Theory and Data Science
被引:9
|作者:
Demir, Hakan
[1
,2
]
Keskin, Seda
[1
]
机构:
[1] Koc Univ, Dept Chem & Biol Engn, TR-34450 Istanbul, Turkiye
[2] Ozyegin Univ, Dept Nat & Math Sci, TR-34794 Istanbul, Turkiye
基金:
欧洲研究理事会;
关键词:
gas separation;
machine learning;
membranes;
mixed matrix membranes;
MOFs;
molecular simulation;
METAL-ORGANIC FRAMEWORKS;
ZEOLITIC IMIDAZOLATE FRAMEWORKS;
CHARGE EQUILIBRATION;
SEPARATION PERFORMANCES;
MECHANICAL STABILITY;
MOLECULAR-DYNAMICS;
COMPUTATION-READY;
CO2;
SEPARATION;
CARBON CAPTURE;
DESIGN;
D O I:
10.1002/mame.202300225
中图分类号:
T [工业技术];
学科分类号:
08 ;
摘要:
Membrane-based separation can offer significant energy savings over conventional separation methods. Given their highly customizable and porous structures, metal-organic frameworks- (MOFs) are considered as next-generation membrane materials that can bring about high separation performance and energy efficiency in various separation applications. Yet, the enormously large number of possible MOF structures necessitates the development and implementation of efficient modeling approaches to expedite the design, discovery, and selection of optimal MOF-based membranes via directing the experimental efforts, time, and resources to the potentially useful membrane materials. With the recent developments in the field of atomic simulations and artificial intelligence methods, a new era of membrane modeling has started. This review focuses on the recent advances made and key strategies used in the modeling of MOF-based membranes and highlight the huge potential of combining atomistic modeling of MOFs with machine learning to explore very large number of MOF membranes and MOF/polymer composite membranes for gas separation. Opportunities and challenges related to the implementation of data-driven approaches to extract useful structure-property relations of MOF-based membranes and to produce design principles for the high-performing MOF-based membranes are discussed. Combining advanced simulation techniques and artificial intelligence methods can help reveal unexplored aspects of metal-organic framework (MOF)-based membranes at an unprecedented speed. This review describes potential benefits of implementing joint simulation-AI driven approach in MOF and MOF/polymer membrane research as well as key advances in modeling techniques that can provide more accurate and more detailed results enabling fine-tuning of subsequent experiments.image
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页数:15
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