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Recent progress in two-dimensional polymers for energy storage and conversion: design, synthesis, and applications

机译:高能量储存和转化二维聚合物的最新进展:设计,合成和应用

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摘要

The increasing concerns about environmental issues caused by fossil fuels, and the demand for renewable energy have trigged extensive research into efficient energy storage and conversion systems. Owning to their unique properties of a high specific area, well-defined pore size, and tunable molecular structure, 2D metal-organic frameworks (MOFs) and covalent-organic frameworks (COFs), as two typical classes of 2D porous polymers, have been considered as intriguing materials for energy storage and conversion. This review provides a comprehensive overview of the up-to-date synthesis strategies of 2D MOFs and COFs, and their further applications. We mainly focus on the top-down and bottom-up synthesis methods, and applications in supercapacitors, lithium-ion batteries, batteries beyond lithium-ion batteries (lithium-sulfur batteries, and sodium-ion batteries), and electrocatalysts for CO2 reduction, oxygen evolution, oxygen reduction, and hydrogen evolution.
机译:对由化石燃料引起的环境问题的越来越多的担忧,以及可再生能源的需求已经延长了高效的能量存储和转换系统的广泛研究。 拥有它们的独特性质,高特定区域,明确明确的孔径和可调谐分子结构,2D金属 - 有机框架(MOF)和共价有机框架(COFS),作为两个典型的2D多孔聚合物类别 被认为是用于能量储存和转化的有趣材料。 本综述提供了2D MOFS和COF的最新综合策略及其进一步应用程序的全面概述。 我们主要专注于自上而下和自下而上的合成方法,以及超级电容器,锂离子电池,电池超出锂离子电池(锂 - 硫磺电池和钠离子电池)的应用,以及CO2减少的电催化剂, 氧气进化,氧气还原和氢气进化。

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