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用于电化学能量存储和转换应用的层状过渡金属二硫属化物/碳纳米复合材料。

Layered transition metal dichalcogenide/carbon nanocomposites for electrochemical energy storage and conversion applications.

作者信息

Kim Yena, Park Teahoon, Na Jongbeom, Yi Jin Woo, Kim Jeonghun, Kim Minjun, Bando Yoshio, Yamauchi Yusuke, Lin Jianjian

机构信息

Key Laboratory of Eco-chemical Engineering, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

出版信息

Nanoscale. 2020 Apr 30;12(16):8608-8625. doi: 10.1039/d0nr01664k.

Abstract

Layered transition metal dichalcogenide (LTMD)/carbon nanocomposites obtained by incorporating conductive carbons such as graphene, carbon nanotubes (CNT), carbon nanofibers (CF), hybrid carbons, hollow carbons, and porous carbons exhibit superior electrochemical properties for energy storage and conversion. Due to the incorporation of carbon into composites, the LTMD/carbon nanocomposites have the following advantages: (1) highly efficient ion/electron transport properties that promote electrochemical performance; (2) suppressed agglomeration and restacking of active materials that improve the cycling performance and electrocatalytic stability; and (3) unique structures such as network, hollow, porous, and vertically aligned nanocomposites that facilitate the shortening of the ion and electrolyte diffusion pathway. In this context, this review introduces and summarizes the recent advances in LTMD/carbon nanocomposites for electrochemical energy-related applications. First, we briefly summarize the reported synthesis strategies for the preparation of LTMD/carbon nanocomposites with various carbon materials. Following this, previous studies using rationally synthesized nanocomposites are discussed based on a variety of applications related to electrochemical energy storage and conversion including Li/Na-ion batteries (LIBs/SIBs), Li-S batteries, supercapacitors, and the hydrogen evolution reaction (HER). In particular, the sections on LIBs and the HER as representative applications of LTMD/carbon nanocomposites are described in detail by classifying them with different carbon materials containing graphene, carbon nanotubes, carbon nanofibers, hybrid carbons, hollow carbons, and porous carbons. In addition, we suggest a new material design of LTMD/carbon nanocomposites based on theoretical calculations. At the end of this review, we provide an outlook on the challenges and future developments in LTMD/carbon nanocomposite research.

摘要

通过掺入诸如石墨烯、碳纳米管(CNT)、碳纳米纤维(CF)、混合碳、中空碳和多孔碳等导电碳而获得的层状过渡金属二硫属化物(LTMD)/碳纳米复合材料,在能量存储和转换方面表现出优异的电化学性能。由于在复合材料中掺入了碳,LTMD/碳纳米复合材料具有以下优点:(1)高效的离子/电子传输特性,可促进电化学性能;(2)抑制活性材料的团聚和重新堆叠,从而提高循环性能和电催化稳定性;(3)独特的结构,如网络、中空、多孔和垂直排列的纳米复合材料,有助于缩短离子和电解质的扩散路径。在此背景下,本综述介绍并总结了LTMD/碳纳米复合材料在电化学能源相关应用方面的最新进展。首先,我们简要总结了已报道的用于制备具有各种碳材料的LTMD/碳纳米复合材料的合成策略。在此之后,基于与电化学能量存储和转换相关的各种应用,包括锂/钠离子电池(LIBs/SIBs)、锂硫电池、超级电容器和析氢反应(HER),讨论了先前使用合理合成的纳米复合材料的研究。特别是,作为LTMD/碳纳米复合材料代表性应用的LIBs和HER部分,通过用包含石墨烯、碳纳米管、碳纳米纤维、混合碳、中空碳和多孔碳的不同碳材料进行分类进行了详细描述。此外,我们基于理论计算提出了LTMD/碳纳米复合材料的新材料设计。在本综述的结尾,我们展望了LTMD/碳纳米复合材料研究中的挑战和未来发展。

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