Centre for Nanoscience and Nanotechnology, Department of Physics, Bharathidasan University, Tiruchirappalli-620024, Tamil Nadu, India.
Nanoscale. 2019 Jan 31;11(5):2439-2446. doi: 10.1039/c8nr10092f.
Conducting an efficient hydrogen evolution reaction (HER) using two-dimensional molybdenum disulphide as electrocatalysts remains a challenging task due to the insufficient active edge sites. In this regard, herein, molybdenum disulphide nanosheets with rich active sulphur sites were vertically grown on the graphene surface via a chemical vapour deposition process. The direct integration of vertically aligned MoS2 nanosheets on graphene forms a van der Waals (vdW) heterojunction, which facilitates a barrier-free charge transport towards the electrolyte as a result of unique and well-matched energy band alignment at the interface. The prospective combination of Ohmic graphene/MoS2 heterostructure and the high electrocatalytic edge activity of sulphur delivers an incredibly and small turn-on potential of 0.14 V vs. RHE in the acid electrolyte solution. Most importantly, the use of a vertical vdW device architecture exhibits nearly 8× improvement in HER than that of its layered counterpart. Moreover, the HER reaction is highly stable over 50 hours of continuous operation even after 150 days. The combined analysis of our study makes it certain that the graphene/MoS2 heterostructure will be an efficient alternative electrode for low-cost and large-scale electrochemical applications.
使用二维二硫化钼作为电催化剂来高效进行析氢反应(HER)仍然是一项具有挑战性的任务,因为其活性边缘位点不足。在这方面,本文通过化学气相沉积工艺,在石墨烯表面垂直生长具有丰富活性硫位点的二硫化钼纳米片。垂直排列的 MoS2 纳米片直接集成在石墨烯上,形成范德华(vdW)异质结,由于界面处独特且匹配良好的能带排列,促进了无阻碍的电荷向电解质的传输。硫的欧姆石墨烯/MoS2 异质结构的预期组合和高电催化边缘活性在酸性电解质溶液中提供了令人难以置信的小开启电位 0.14 V vs. RHE。最重要的是,垂直 vdW 器件架构的使用使 HER 反应的性能比其层状对应物提高了近 8 倍。此外,即使在 150 天后,HER 反应在 50 小时的连续运行中仍具有高度稳定性。我们的综合分析表明,石墨烯/MoS2 异质结构将成为用于低成本和大规模电化学应用的高效替代电极。