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Agricultural waste-derived activated carbon/graphene composites for high performance lithium-ion capacitors

机译:用于高性能锂离子电容器的农业废物衍生的活性炭/石墨烯复合材料

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摘要

Agricultural waste, corncob-derived activated carbon (AC) is prepared by pre-carbonization of the precursors and activation of KOH of the pyrolysis products. The AC oxidized by HNO3 is called OAC. The OAC/reduced graphene oxide (rGO) composites are prepared by urea reduction (aqueous mixture of OAC and graphene oxide). The influence of the mass ratio of graphene oxide (GO) on the electrochemical properties of OAC/rGO composites as electrode materials for electrochemical capacitors is studied. It is found that the rGO sheets were used as a wrinkled carrier to support the OAC particles. The pore size distribution and surface area are dependent on the GO mass ratio. In addition, the rate capability of OAC is improved by introducing GO. For the OAC/rGO composites prepared from precursors with a GO mass ratio of 5%, the best rate performance was achieved. The lithium ion capacitor, based on OAC/rGO as cathode and Si/C as anode, exhibits a high energy density of 141 W h kg(-1) at 1391 W kg(-1). 78.98% capacity retention is achieved after 1000 cycles at 0.4 A g(-1).
机译:农业废物,玉米浦衍生的活性炭(AC)通过预碳化前体和激活产物的KOH活化来制备。通过HNO3氧化的AC称为OAC。通过尿素还原(OAC和氧化石墨烯水混合物)制备OAC /脱脂氧化物(RGO)复合材料。研究了石墨烯氧化物(GO)对OAC / RGO复合材料电化学性能作为电化学电容器的电极材料的影响。发现RGO片材用作皱纹载体以支撑OAC颗粒。孔径分布和表面积取决于GO质量比。此外,通过引入GO来改善OAC的速率能力。对于由前体制备的OAC / RGO复合材料,具有5%的前体,达到最佳速率性能。基于OAC / RGO作为阴极和Si / C作为阳极的锂离子电容器在1391Wkg(-1)下表现出141Wh kg(-1)的高能量密度。在0.4Ag(-1)的1000次循环后,在1000次循环后实现78.98%。

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    《RSC Advances》 |2019年第50期|共5页
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  • 正文语种 eng
  • 中图分类 化学;
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