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具有均匀尺寸的石墨烯量子点的高性能超级电容器。

High-Performance Supercapacitor of Graphene Quantum Dots with Uniform Sizes.

机构信息

College of Materials Science and Engineering , Qingdao University of Science and Technology , Qingdao 266042 P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Apr 18;10(15):12983-12991. doi: 10.1021/acsami.8b00323. Epub 2018 Apr 4.

Abstract

Graphene quantum dots (GQDs) with uniform sizes of less than 5 nm are synthesized by a novel top-down strategy. Nitric acid as a strong oxidant can be used to cut graphene oxide via sonication and hydrothermal processes. Moreover, purified GQDs are obtained from removing oxygen-containing functional groups in a heat treatment process. Both nanoscale size and edge effect of GQDs improve their abundant active sites and restrain the restack of graphene nanosheets. Meanwhile, their electrochemical performance demonstrates the properties of the GQDs for practical application in energy storage. The GQD electrode material shows an ideal electric double-layer capacitance behavior such as a high specific capacitance of 296.7 F g, a satisfactory energy density of 41.2 W h kg at 1 A g, a low internal resistance, a small relaxation time, and an excellent cycling stability. The results illustrate excellent electrochemical activity, high conductivity, and enhanced ion transport rate on the surface of electrolyte and electrode. The advantages of GQDs confirm their unique characteristics for potential applications in the field of electrode materials for supercapacitors.

摘要

通过一种新颖的自上而下的策略合成了尺寸均小于 5nm 的石墨烯量子点 (GQDs)。硝酸作为一种强氧化剂,可以通过超声和水热过程来切割氧化石墨烯。此外,通过热处理过程去除含氧官能团,可以得到纯化的 GQDs。GQDs 的纳米级尺寸和边缘效应提高了其丰富的活性位点,并抑制了石墨烯纳米片的堆积。同时,它们的电化学性能展示了 GQDs 在储能实际应用中的特性。GQD 电极材料表现出理想的双电层电容行为,例如在 1A/g 时具有 296.7 F/g 的高比电容、41.2 Wh/kg 的令人满意的能量密度、低内阻、小弛豫时间和出色的循环稳定性。这些结果表明,在电解质和电极表面上具有出色的电化学活性、高导电性和增强的离子传输速率。GQDs 的优势证实了它们在超级电容器电极材料领域的潜在应用的独特特性。

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