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致密储能--石墨烯用于超级电容器的机遇和展望

陶莹 李欢 杨全红

储能科学与技术2016,Vol.5Issue(6):780-786,7.
储能科学与技术2016,Vol.5Issue(6):780-786,7.DOI:10.12028/j.issn.2095-4239.2016.0042

致密储能--石墨烯用于超级电容器的机遇和展望

Compact energy storage:Opportunities and challenges of graphene for supercapacitors

陶莹 1李欢 1杨全红1

作者信息

  • 1. 天津大学化工学院,绿色合成与转化教育部重点实验室,天津 300072
  • 折叠

摘要

Abstract

Gravimetric energy densities of nanocarbons continuously improved over the years. However, due to their low densities, these nanomaterials normally suffer from relatively low volumetric performance, and their high gravimetric energy densities cannot be translated to the practical devices. Developing electrode materials with high volumetric performance and achieving compact energy storage on a device level is highly important to promote the materials and devices for energy storage into real applications. As a basic unit for all types of sp2 carbons and flexible 2D material, graphene has many intrinsic characteristics beneficial to compact energy storage. Based on the applications of graphene in supercapacitors, the paper presents design principles for practical energy storage devices from the perspective of material, electrode and devices respectively. The recent efforts to prepare electrode materials with a high volumetric performance, particularly the design concept on the high density electrode materials for high volumetric performance are also introduced. This review further highlights the importance to design energy storage material from a device perspective and discusses the opportunities and challenges toward compact energy storage.

关键词

石墨烯/高密度/致密储能/超级电容器/体积容量性能

Key words

graphene/high density/compact energy storage/supercapacitor/volumetric performance

分类

化学化工

引用本文复制引用

陶莹,李欢,杨全红..致密储能--石墨烯用于超级电容器的机遇和展望[J].储能科学与技术,2016,5(6):780-786,7.

基金项目

国家自然科学基金项目(51525204和51372167)。 ()

储能科学与技术

OACSCDCSTPCD

2095-4239

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