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从金属有机框架到多孔碳材料:能源与环境视角下的最新进展与展望

From metal-organic frameworks to porous carbon materials: recent progress and prospects from energy and environmental perspectives.

作者信息

Wang Jing, Wang Yuelin, Hu Hongbo, Yang Qipeng, Cai Jinjun

机构信息

School of Chemical Engineering, Xiangtan University, Xiangtan 411105, China.

Department of Chemical Engineering, Imperial College London, London SW7 2AZ, UK.

出版信息

Nanoscale. 2020 Feb 20;12(7):4238-4268. doi: 10.1039/c9nr09697c.

Abstract

Metal-organic frameworks (MOFs) have emerged as promising materials in the areas of gas storage, magnetism, luminescence, and catalysis owing to their superior property of having highly crystalline structures. However, MOF stability toward heat or humidity is considerably less as compared to carbons because they are constructed from the assembly of ligands with metal ions or clusters via coordination bonds. Transforming MOFs into carbons is bringing the novel potential for MOFs to achieve industrialization, and carbons with controlled pore sizes and surface doping are one of the most important porous materials. By selecting MOFs as a precursor or template, carbons with heteroatom doping and well-developed pores can be achieved. In this review, we discussed the state-of-art study progress made in the new development of MOF-derived metal-free porous carbons. In particular, the potential use of metal-free carbons from environmental and energy perspectives, such as adsorption, supercapacitors, and catalysts, were analyzed in detail. Moreover, an outlook for the sustainable development of MOF-derived porous carbons in the future was also presented.

摘要

金属有机框架材料(MOFs)因其具有高度结晶结构的优异性能,已成为气体存储、磁性、发光和催化等领域中颇具前景的材料。然而,与碳材料相比,MOFs对热或湿度的稳定性要低得多,因为它们是通过配位键由配体与金属离子或簇组装而成的。将MOFs转化为碳材料为MOFs实现工业化带来了新的潜力,具有可控孔径和表面掺杂的碳材料是最重要的多孔材料之一。通过选择MOFs作为前驱体或模板,可以制备出具有杂原子掺杂和发达孔隙的碳材料。在这篇综述中,我们讨论了MOF衍生的无金属多孔碳新材料开发方面的最新研究进展。特别是,从环境和能源角度详细分析了无金属碳在吸附、超级电容器和催化剂等方面的潜在应用。此外,还展望了未来MOF衍生多孔碳的可持续发展。

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