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Supercapacitor electrodes from activation of binderless green monoliths of biomass self-adhesive carbon grains composed of varying amount of graphene additive

机译:超级电容器电极,由不同量的石墨烯添加剂组成的生物质自粘碳晶粒的活化粘合剂电极

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摘要

Binderless electrodes of activated carbon monoliths (ACMs) and its composites with graphene are prepared by carbonization and activation of green monoliths consisting of self-adhesive carbon grains and 0-10 wt% KOH-treated graphene. Compared with ACMs, the optimized composite containing 6 wt% graphene exhibits more ordered micro-structures with increased crystallite height, and graphitic sp(2) carbons (I (D) /I (G) = 0.49 vs. 0.91) along with enhanced porosity; as revealed by X-ray diffraction, Raman, and N-2 adsorption-desorption studies. These modifications lead to increased electrical conductivity (13 vs. 9 S cm(-1)) through improved interconnections of carbon particles by graphene, and surface area similar to (800 vs. 456 m(2) g(-1)) due to increased inter-particle spacing. Further, contrary to ACMs, the composite electrodes can offer faster delivery of energy in almost 50% less response time (5 vs. 8 s) due to reduced equivalent series resistance (1.67 vs. 2.65 Omega) and charge transfer resistance (0.55 vs. 1.33 Omega).
机译:通过碳化和活化由自粘合剂碳晶粒和0-10wt%KOH处理的石墨烯组成的碳化和活化,制备活性炭全氧化碳(Acms)的粘合剂电极及其复合材料。与ACMS相比,含有6wt%石墨烯的优化复合材料表现出更多有序的微结构,具有增加的微晶高度,和石墨SP(2)碳(I(d)/ i(g)= 0.49与0.91)以及增强的孔隙率;如X射线衍射,拉曼和N-2吸附 - 解吸研究所揭示。这些修改通过通过石墨烯改进的碳颗粒的改进的互连来增加电导率(13 vs.9scm(-1)),并且由于(800 vs.5.56m(2)g(-1))的表面积相似增加粒子间距。进一步,与ACM相反,由于等效串联电阻(1.67对2.65ω)和电荷转移电阻(0.55 Vs. 1.33 omega)。

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