Three-dimensional MoS2/rGO hydrogel with extremely high double-layer capacitance as active catalyst for hydrogen evolution reaction

塔菲尔方程 过电位 二硫化钼 石墨烯 化学工程 材料科学 电化学 堆积 催化作用 双层电容 氧化物 分解水 纳米技术 化学 复合材料 电极 介电谱 有机化学 物理化学 冶金 工程类 光催化
作者
Junma Zhang,Zhao Li,Aiping Liu,Xiaoyun Li,Huaping Wu,Congda Lu
出处
期刊:Electrochimica Acta [Elsevier BV]
卷期号:182: 652-658 被引量:88
标识
DOI:10.1016/j.electacta.2015.09.147
摘要

Three-dimensional (3D) molybdenum disulfide/reduced graphene oxide (MoS2/rGO) hydrogels were developed by a simple and controllable one-pot hydrothermal method. The MoS2 nanosheets were uniformly anchored on the 3D rGO framework with strong adhesion. The obtained MoS2/rGO hydrogel with optimized rGO percentage showed extremely high double-layer capacitance about 29.60 mF/cm2 due to the special 3D network structure. Electrochemical measurements confirmed that the MoS2/rGO hydrogel exhibited excellent electrocatalytic activity for hydrogen evolution reaction (HER) with a small onset overpotential of 125 mV and Tafel slope of 41 mV/decade, indicating the Volmer-Heyrovsky mechanism during the HER process and the electrochemical desorption step as rate-limiting step. Our results demonstrated that the 3D MoS2/rGO hydrogel could not only provide rich active sites for HER due to the inhibition of re-stacking process of (0 0 2) planes of MoS2 nanosheets along the C-axis, but also greatly contribute to the enlarged electrochemical surface area because of the formation of 3D network structure in the self-assembly process. This may open up a potential way to design advanced materials for HER.

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