材料科学
电化学能量转换
储能
能量转换
纳米技术
氢气储存
析氧
金属有机骨架
电化学储能
电池(电)
材料设计
氮化物
电化学
超级电容器
工艺工程
电极
冶金
复合材料
功率(物理)
量子力学
有机化学
工程类
化学
吸附
物理化学
热力学
图层(电子)
合金
物理
作者
Arindam Indra,Taeseup Song,Ungyu Paik
标识
DOI:10.1002/adma.201705146
摘要
Abstract Exploring new materials with high efficiency and durability is the major requirement in the field of sustainable energy conversion and storage systems. Numerous techniques have been developed in last three decades to enhance the efficiency of the catalyst systems, control over the composition, structure, surface area, pore size, and moreover morphology of the particles. In this respect, metal organic framework (MOF) derived catalysts are emerged as the finest materials with tunable properties and activities for the energy conversion and storage. Recently, several nano‐ or microstructures of metal oxides, chalcogenides, phosphides, nitrides, carbides, alloys, carbon materials, or their hybrids are explored for the electrochemical energy conversion like oxygen evolution, hydrogen evolution, oxygen reduction, or battery materials. Interest on the efficient energy storage system is also growing looking at the practical applications. Though, several reviews are available on the synthesis and application of MOF and MOF derived materials, their applications for the electrochemical energy conversion and storage is totally a new field of research and developed recently. This review focuses on the systematic design of the materials from MOF and control over their inherent properties to enhance the electrochemical performances.
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