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3D-Ni-foam/graphene heterostructure decorated with g-C_3N_4 composite: A noble-metal free electrocatalyst for hydrogen evolution reaction

机译:用G-C_3N_4复合材料装饰3D-Ni-FoAM /石墨烯异质结构:用于氢化反应的贵金属游离电气催化剂

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The present study reports the synthesis of Graphene on Ni-foam decorated with graphitic carbon nitride (g-C_3N_4) by Chemical vapour Deposition (CVD). The as-synthesized samples have been characterizedvia XRD, EDX-SEM, and Raman analysis and tested for hydrogen evolution performance. The catalyst made of Ni-foam-graphene@g-C_3N_4 nanohybrid, shows excellent hydrogenevolution in terms of low onset (15mV Vs RHE), overpotential (140mV@10mA/cm~2) and high cathodic current density. Here, g-C_3N_4 is working as a catalystand graphene on Ni-foamis especially boosting the electrochemical performance by creating a facileelectron-conducting path as well as increasing high surface area leading to the adsorption of more electrolytes inside the electrode surface. The main motto of this study is to provide a novel and cost-effective approach of synthesizing an economical and efficient noble-metal free electrocatalyst for hydrogen productionas a green fuel.
机译:本研究报告了通过化学气相沉积(CVD)用石墨氮化物(G-C_3N_4)装饰的Ni-泡沫上石墨烯的合成。 AS合成的样品已经表征了XRD,EDX-SEM和拉曼分析,并测试了氢气进化性能。 催化剂由Ni-FoAM-石墨烯@ G-C_3N_4纳米嗜含量,在低发作(15mV Vs RHE),过电位(140mV @ 10mA / cm〜2)和高阴极电流密度方面具有优异的氢化。 这里,G-C_3N_4在Ni-Foamis上用作催化剂石墨烯,特别是通过产生辅助电子传导路径来提高电化学性能,以及增加电极表面内更电解质的吸附的高表面积。 本研究的主要座右铭是提供一种新颖且经济效益的方法,可用于合成用于氢生产的经济高效贵金属无电催化剂。

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