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首页> 外文期刊>Electrochimica Acta >Activated porous carbon supported rhenium composites as electrode materials for electrocatalytic and supercapacitor applications
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Activated porous carbon supported rhenium composites as electrode materials for electrocatalytic and supercapacitor applications

机译:活化多孔碳负载铼复合材料作为电催化和超级电容器应用的电极材料

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摘要

In this study, we developed highly dispersed rhenium nanoparticles decorated on activated carbon (Re@CDACs). The activated carbons were derived from the biomass raw materials cardamom pods (Elettaria cardamomum L) via carbonization followed by activation with ZnCl2 at high temperature. The Re NPs synthesis was achieved by decomposition of [Re-2(CO)(10)] complex via a facile microwave thermal reduction technique. The as-prepared Re@CDACs nanocomposites were characterized by a combination of state-of-the-art techniques. The Re@CDACs nanocomposites so prepared were utilized for electrocatalytic oxidation of sunset yellow (SY) and supercapacitor applications. The Re@CDACs-modified electrodes were found to show extraordinary electrochemical performance for sensitive and selective detection of SY with a wide linear range of 0.05-390 mu M and a detection limit and sensitivity of 16 nM (S/N = 3) and 91.53 mu A mu M-1, respectively, surpassing other modified electrodes. Moreover, these Re@CDACs catalysts were also found to exhibit a higher specific capacitance of 181 F g(-1) at a current density of 1.6 A g(-1) in 1.0 M H2SO4 electrolyte. The specific capacitance retention of 90% was achieved after 2500 cycles at current density 2.0 A g(-1). Therefore, we have demonstrated that the Re@CDACs nanocomposite materials could be used as a promising electrode material in electrochemical oxidation of SY and energy storage applications. (C) 2018 Published by Elsevier Ltd.
机译:在这项研究中,我们开发了高度分散的铼纳米粒子,装饰在活性炭(RE @ CDAC)上。通过碳化,通过碳化衍生自生物量原料豆蔻荚(Elettaria Cardamomum L),然后在高温下与ZnCl 2一起激活。通过通过容易的微波热还原技术分解[Re-2(CO)(10)]复合物来实现RE NPS合成。通过最先进的技术的组合,表征如准备的RE @ CDACS纳米复合材料。如此制备的RE @ CDACS纳米复合材料用于日落黄色(SY)和超级电容器应用的电催化氧化。发现RE @ CDACS改性电极为SY的敏感和选择性检测显示出非凡的电化学性能,宽线性范围为0.05-390 mu m,检测极限和16nm的灵敏度(s / n = 3)和91.53 MU MU M-1分别超过其他改进的电极。此外,还发现这些RE @ CDACS催化剂在1.0MH2SO4电解质中以1.6Ag(-1)的电流密度具有较高的181fg(-1)的比电容。在电流密度为2.0Ag(-1)的2500次循环后实现90%的特定电容保持。因此,我们已经证明了RE @ CDACS纳米复合材料可以用作SY和储能应用的电化学氧化中的有希望的电极材料。 (c)2018年由elestvier有限公司发布

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