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用于集水和同步碳捕获的金属有机框架:吸湿性材料综述

Metal-Organic Frameworks for Water Harvesting and Concurrent Carbon Capture: A Review for Hygroscopic Materials.

作者信息

Lin Hengyu, Yang Yihao, Hsu Yu-Chuan, Zhang Jiaqi, Welton Claire, Afolabi Ibukun, Loo Marshal, Zhou Hong-Cai

机构信息

Department of Chemistry, Texas A&M University, College Station, TX, 77843, USA.

出版信息

Adv Mater. 2024 Mar;36(12):e2209073. doi: 10.1002/adma.202209073. Epub 2023 Jul 19.

DOI:10.1002/adma.202209073
PMID:36693232
Abstract

As water scarcity becomes a pending global issue, hygroscopic materials prove a significant solution. Thus, there is a good cause following the structure-performance relationship to review the recent development of hygroscopic materials and provide inspirational insight into creative materials. Herein, traditional hygroscopic materials, crystalline frameworks, polymers, and composite materials are reviewed. The similarity in working conditions of water harvesting and carbon capture makes simultaneously addressing water shortages and reduction of greenhouse effects possible. Concurrent water harvesting and carbon capture is likely to become a future challenge. Therefore, an emphasis is laid on metal-organic frameworks (MOFs) for their excellent performance in water and CO adsorption, and representative role of micro- and mesoporous materials. Herein, the water adsorption mechanisms of MOFs are summarized, followed by a review of MOF's water stability, with a highlight on the emerging machine learning (ML) technique to predict MOF water stability and water uptake. Recent advances in the mechanistic elaboration of moisture's effects on CO adsorption are reviewed. This review summarizes recent advances in water-harvesting porous materials with special attention on MOFs and expects to direct researchers' attention into the topic of concurrent water harvesting and carbon capture as a future challenge.

摘要

随着水资源短缺成为一个亟待解决的全球性问题,吸湿材料被证明是一个重要的解决方案。因此,基于结构-性能关系,有充分的理由回顾吸湿材料的最新进展,并为新型材料提供启发性见解。在此,对传统吸湿材料、晶体框架、聚合物和复合材料进行了综述。集水和碳捕获在工作条件上的相似性使得同时解决水资源短缺和减少温室效应成为可能。同时进行集水和碳捕获很可能成为未来的一项挑战。因此,重点介绍了金属有机框架(MOF)在水和CO吸附方面的优异性能以及微孔和介孔材料的代表性作用。在此,总结了MOF的水吸附机制,随后综述了MOF的水稳定性,重点介绍了用于预测MOF水稳定性和吸水量的新兴机器学习(ML)技术。综述了水分对CO吸附影响的机理阐述方面的最新进展。本综述总结了集水多孔材料的最新进展,特别关注MOF,并期望引导研究人员关注同时进行集水和碳捕获这一未来挑战的主题。

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