Structure Design and Composition Engineering of Carbon‐Based Nanomaterials for Lithium Energy Storage

材料科学 储能 电化学储能 纳米技术 锂(药物) 纳米材料 电化学 碳纳米管 合理设计 碳纤维 电极 超级电容器 复合数 复合材料 化学 医学 物理 内分泌学 物理化学 功率(物理) 量子力学
作者
Hongya Geng,Yan Peng,Liangti Qu,Haijiao Zhang,Minghong Wu
出处
期刊:Advanced Energy Materials [Wiley]
卷期号:10 (10) 被引量:194
标识
DOI:10.1002/aenm.201903030
摘要

Abstract Carbon‐based nanomaterials have significantly pushed the boundary of electrochemical performance of lithium‐based batteries (LBs) thanks to their excellent conductivity, high specific surface area, controllable morphology, and intrinsic stability. Complementary to these inherent properties, various synthetic techniques have been adopted to prepare carbon‐based nanomaterials with diverse structures and different dimensionalities including 1D nanotubes and nanorods, 2D nanosheets and films, and 3D hierarchical architectures, which have been extensively applied as high‐performance electrode materials for energy storage and conversion. The present review aims to outline the structural design and composition engineering of carbon‐based nanomaterials as high‐performance electrodes of LBs including lithium‐ion batteries, lithium–sulfur batteries, and lithium–oxygen batteries. This review mainly focuses on the boosting of electrochemical performance of LBs by rational dimensional design and porous tailoring of advanced carbon‐based nanomaterials. Particular attention is also paid to integrating active materials into the carbon‐based nanomaterials, and the structure–performance relationship is also systematically discussed. The developmental trends and critical challenges in related fields are summarized, which may inspire more ideas for the design of advanced carbon‐based nanostructures with superior properties.
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