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Computational Simulations of Metal-Organic Frameworks to Enhance Adsorption Applications
被引:9
|作者:
Daglar, Hilal
[1
]
Gulbalkan, Hasan Can
[1
]
Aksu, Gokhan Onder
[1
]
Keskin, Seda
[1
]
机构:
[1] Koc Univ, Dept Chem & Biol Engn, TR-34450 Istanbul, Turkiye
来源:
关键词:
gas adsorption;
metal-organic framework;
molecular simulation;
STRUCTURE-PROPERTY RELATIONSHIPS;
CO2 WORKING CAPACITY;
HYDROGEN STORAGE;
FORCE-FIELD;
METHANE STORAGE;
CHARGE EQUILIBRATION;
WATER-ADSORPTION;
AB-INITIO;
MOLECULAR SIMULATIONS;
POROUS MATERIALS;
D O I:
10.1002/adma.202405532
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Metal-organic frameworks (MOFs), renowned for their exceptional porosity and crystalline structure, stand at the forefront of gas adsorption and separation applications. Shortly after their discovery through experimental synthesis, computational simulations quickly become an important method in broadening the use of MOFs by offering deep insights into their structural, functional, and performance properties. This review specifically addresses the pivotal role of molecular simulations in enlarging the molecular understanding of MOFs and enhancing their applications, particularly for gas adsorption. After reviewing the historical development and implementation of molecular simulation methods in the field of MOFs, high-throughput computational screening (HTCS) studies used to unlock the potential of MOFs in CO2 capture, CH4 storage, H2 storage, and water harvesting are visited and recent advancements in these adsorption applications are highlighted. The transformative impact of integrating artificial intelligence with HTCS on the prediction of MOFs' performance and directing the experimental efforts on promising materials is addressed. An outlook on current opportunities and challenges in the field to accelerate the adsorption applications of MOFs is finally provided. This review highlights the significance of molecular simulations in expanding the understanding of metal-organic frameworks (MOFs) and improving their gas adsorption applications. The historical development and implementation of molecular simulations in the MOF field are given, high-throughput computational screening studies used to unlock the potential of MOFs in CO2 capture, CH4 storage, H2 storage, and water harvesting are discussed. image
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页数:26
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