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首页> 外文期刊>RSC Advances >One-step cathodic electrodeposition of a cobalt hydroxide–graphene nanocomposite and its use as a high performance supercapacitor electrode material
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One-step cathodic electrodeposition of a cobalt hydroxide–graphene nanocomposite and its use as a high performance supercapacitor electrode material

机译:氢氧化钴-石墨烯纳米复合材料的一步式阴极电沉积及其作为高性能超级电容器电极材料的用途

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In this study, Co(OH) _(2) -reduced graphene oxide has been synthesized using a simple and rapid one-step cathodic electrodeposition method in a two electrode system at a constant current density on a stainless steel plate, and then characterized as a supercapacitive material on Ni foam. The composites were characterized by FT-IR, X-ray diffraction, scanning electron microscopy, and cyclic voltammetry using a galvanostatic charge/discharge test. The feeding ratios of the initial components for electrodeposition had a significant effect on the structure and electrochemical performance of the Co(OH) _(2) -reduced graphene oxide composite. The results show that the 1?:?4 (w/w) ratio of GO?:?CoCl _(2) ·6H _(2) O was optimum and produced an intertwined composite structure with impressive supercapacitive behavior. The specific capacitance of the composite was measured to be 734 F g ~(?1) at a current density of 1 A g ~(?1) . Its rate capability was ~78% at 20 A g ~(?1) and its capacitance retention was 95% after 1000 cycles of charge–discharge. Moreover, its average energy density and power density were calculated to be 60.6 W h kg ~(?1) and 3208 W kg ~(?1) , respectively. This green synthesis method enables a rapid and low-cost route for the large scale production of Co(OH) _(2) -reduced graphene oxide nanocomposite as an efficient supercapacitor material.
机译:在这项研究中,Co(OH)_(2)还原的氧化石墨烯是通过简单快速的一步式阴极电沉积方法在不锈钢板上以恒定电流密度在两电极系统中合成的,然后表征为镍泡沫上的超级电容材料。通过FT-IR,X射线衍射,扫描电子显微镜和使用恒电流充电/放电测试的循环伏安法对复合材料进行表征。用于电沉积的初始组分的进料比对Co(OH)_(2)-还原的氧化石墨烯复合材料的结构和电化学性能具有显着影响。结果表明,GO 2 ∶CoCl _(2)·6H _(2)O的1∶∶4(w / w)比是最佳的,并产生具有令人印象深刻的超电容性能的缠结复合结构。在电流密度为1 A g〜(?1)的情况下,复合材料的比电容为734 F g〜(?1)。在1000次充放电后,其额定容量为〜78%,在20 A g〜(?1)时,其电容保持率为95%。此外,其平均能量密度和功率密度经计算分别为60.6 W h kg〜(?1)和3208 W kg〜(?1)。这种绿色合成方法为大规模生产Co(OH)_(2)还原的氧化石墨烯纳米复合材料提供了一条快速而低成本的途径,该纳米复合材料是一种有效的超级电容器材料。

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