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The Effect of Thermal Exfoliation Temperature on the Structure and Supercapacitive Performance of Graphene Nanosheets

机译:热剥离温度对石墨烯纳米片结构和超电容性能的影响

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摘要

Graphene nanosheets (GSs) were prepared from graphite oxide by thermal exfoliation method. The effect of thermal exfoliation temperature on the structure and supercapacitive performance of GSs has been investigated. The results show that the GSs with pore sizes center around 4.0 nm. With an increase of thermal reduction temperature, the number of stacking layers and the structure disorder degree increase, while the oxygen-containing groups content, BET surface area, and electrical resistivity of GSs decrease. The results indicate that 673 K is the preferable thermal exfoliation temperature to acquire good supercapacitive performance. In this case, the GSs have the best supercapacitive performance (233.1 F g−1) in a 6 mol L−1 KOH electrolyte. The prepared GSs at the preferable thermal exfoliation temperature have good rate performance and cycle stability.
机译:通过热剥落法由氧化石墨制备石墨烯纳米片(GSs)。研究了热剥离温度对GSs结构和超电容性能的影响。结果表明,孔径为GS的GS集中在4.0 nm附近。随着热还原温度的升高,堆叠层数和结构无序度增加,而GSs的含氧基团含量,BET表面积和电阻率降低。结果表明,673 K是获得良好的超级电容性能的首选热剥离温度。在这种情况下,GS在6摩尔L -1 KOH电解质中具有最佳的超级电容性能(233.1 F g -1 )。在优选的热剥离温度下制备的GS具有良好的速率性能和循环稳定性。

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