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自组装 N/S 共掺杂柔性石墨烯纸用于高性能储能和氧还原反应。

Self-Assembled N/S Codoped Flexible Graphene Paper for High Performance Energy Storage and Oxygen Reduction Reaction.

机构信息

Institute for Superconducting and Electronic Materials, Australian Institute for Innovative Materials (AIIM) Facility, University of Wollongong , Innovation Campus, North Wollongong, New South Wales 2522, Australia.

Laboratory for Sustainable Technology, School of Chemical and Bimolecular Engineering, The University of Sydney , Sydney, New South Wales 2006, Australia.

出版信息

ACS Appl Mater Interfaces. 2016 Jan 27;8(3):2078-87. doi: 10.1021/acsami.5b10545. Epub 2016 Jan 14.

Abstract

A novel flexible three-dimensional (3D) architecture of nitrogen and sulfur codoped graphene has been successfully synthesized via thermal treatment of a liquid crystalline graphene oxide-doping agent composition, followed by a soft self-assembly approach. The high temperature process turns the layer-by-layer assembly into a high surface area macro- and nanoporous free-standing material with different atomic configurations of graphene. The interconnected 3D network exhibits excellent charge capacitive performance of 305 F g(-1) (at 100 mV s(-1)), an unprecedented volumetric capacitance of 188 F cm(-3) (at 1 A g(-1)), and outstanding energy density of 28.44 Wh kg(-1) as well as cycle life of 10 000 cycles as a free-standing electrode for an aqueous electrolyte, symmetric supercapacitor device. Moreover, the resulting nitrogen/sulfur doped graphene architecture shows good electrocatalytic performance, long durability, and high selectivity when they are used as metal-free catalyst for the oxygen reduction reaction. This study demonstrates an efficient approach for the development of multifunctional as well as flexible 3D architectures for a series of heteroatom-doped graphene frameworks for modern energy storage as well as energy source applications.

摘要

一种新型的氮硫共掺杂石墨烯柔性三维(3D)结构通过热处理液晶氧化石墨烯掺杂剂组合物,然后采用软自组装方法成功合成。高温过程将层层组装转化为具有不同石墨烯原子构型的高表面积宏观和纳米多孔独立式材料。互连的 3D 网络表现出出色的电荷电容性能,在 100 mV s(-1)时为 305 F g(-1),在 1 A g(-1)时具有前所未有的体积电容为 188 F cm(-3),以及作为独立式电极的 28.44 Wh kg(-1)的高能量密度和 10000 次循环的循环寿命,用于水系电解质对称超级电容器装置。此外,所得的氮/硫掺杂石墨烯结构在用作氧还原反应的无金属催化剂时表现出良好的电催化性能、长耐久性和高选择性。该研究展示了一种用于开发多功能和柔性 3D 结构的有效方法,用于一系列杂原子掺杂石墨烯框架,用于现代储能以及能源应用。

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