Emerging MOFs, COFs, and their derivatives for energy and environmental applications.

IF 25.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
The Innovation Pub Date : 2025-01-18 eCollection Date: 2025-02-03 DOI:10.1016/j.xinn.2024.100778
Xinyue Zhang, Minjia Yan, Pei Chen, Jiaqi Li, Yuxuan Li, Hong Li, Xiaolu Liu, Zhongshan Chen, Hui Yang, Suhua Wang, Jianjun Wang, Zhenwu Tang, Qifei Huang, Jiehong Lei, Tasawar Hayat, Zhijian Liu, Liang Mao, Tao Duan, Xiangke Wang
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Abstract

Traditional fossil fuels significantly contribute to energy supply, economic development, and advancements in science and technology. However, prolonged and extensive use of fossil fuels has resulted in increasingly severe environmental pollution. Consequently, it is imperative to develop new, clean, and pollution-free energy sources with high energy density and versatility as substitutes for conventional fossil fuels, although this remains a considerable challenge. Simultaneously, addressing water pollution is a critical concern. The development, design, and optimization of functional nanomaterials are pivotal to advancing new energy solutions and pollutant remediation. Emerging porous framework materials such as metal-organic frameworks (MOFs) and covalent organic frameworks (COFs), recognized as exemplary crystalline porous materials, exhibit potential in energy and environmental applications due to their high specific surface area, adjustable pore sizes and structures, permanent porosity, and customizable functionalities. This work provides a comprehensive and systematic review of the applications of MOFs, COFs, and their derivatives in emerging energy technologies, including the oxygen reduction reaction, oxygen evolution reaction, hydrogen evolution reaction, lithium-ion batteries, and environmental pollution remediation such as the carbon dioxide reduction reaction and environmental pollution management. In addition, strategies for performance adjustment and the structure-effect relationships of MOFs, COFs, and their derivatives for these applications are explored. Interaction mechanisms are summarized based on experimental discussions, theoretical calculations, and advanced spectroscopy analyses. The challenges, future prospects, and opportunities for tailoring these materials for energy and environmental applications are presented.

用于能源和环境应用的新兴mof、COFs及其衍生物。
传统化石燃料为能源供应、经济发展和科学技术进步作出了重大贡献。然而,化石燃料的长期广泛使用造成了日益严重的环境污染。因此,开发新的、清洁的、无污染的、高能量密度的、多用途的能源作为传统化石燃料的替代品是势在必行的,尽管这仍然是一个相当大的挑战。同时,解决水污染问题也是一个关键问题。功能纳米材料的开发、设计和优化对于推进新能源解决方案和污染物修复至关重要。新兴的多孔框架材料,如金属有机框架(mof)和共价有机框架(COFs),被认为是典型的晶体多孔材料,由于其高比表面积、可调节的孔径和结构、永久孔隙率和可定制的功能,在能源和环境应用中表现出潜力。本文全面系统地综述了mof、COFs及其衍生物在新兴能源技术中的应用,包括氧还原反应、析氧反应、析氢反应、锂离子电池以及二氧化碳还原反应和环境污染治理等环境污染修复。此外,本文还探讨了mof、COFs及其衍生物在这些应用中的性能调整策略和结构-效应关系。基于实验讨论、理论计算和先进的光谱分析,总结了相互作用机制。提出了为能源和环境应用量身定制这些材料的挑战、未来前景和机遇。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The Innovation
The Innovation MULTIDISCIPLINARY SCIENCES-
CiteScore
38.30
自引率
1.20%
发文量
134
审稿时长
6 weeks
期刊介绍: The Innovation is an interdisciplinary journal that aims to promote scientific application. It publishes cutting-edge research and high-quality reviews in various scientific disciplines, including physics, chemistry, materials, nanotechnology, biology, translational medicine, geoscience, and engineering. The journal adheres to the peer review and publishing standards of Cell Press journals. The Innovation is committed to serving scientists and the public. It aims to publish significant advances promptly and provides a transparent exchange platform. The journal also strives to efficiently promote the translation from scientific discovery to technological achievements and rapidly disseminate scientific findings worldwide. Indexed in the following databases, The Innovation has visibility in Scopus, Directory of Open Access Journals (DOAJ), Web of Science, Emerging Sources Citation Index (ESCI), PubMed Central, Compendex (previously Ei index), INSPEC, and CABI A&I.
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