Solid-state synthesis of few-layer cobalt-doped MoS2 with CoMoS phase on nitrogen-doped graphene driven by microwave irradiation for hydrogen electrocatalysis

被引:19
作者
Fan, Junpeng [1 ]
Ekspong, Joakim [1 ]
Ashok, Anumol [2 ]
Koroidov, Sergey [3 ]
Gracia-Espino, Eduardo [1 ]
机构
[1] Umea Univ, Dept Phys, S-90187 Umea, Sweden
[2] Stockholm Univ, Dept Mat & Environm Chem, S-10691 Stockholm, Sweden
[3] Stockholm Univ, Dept Phys, S-10691 Stockholm, Sweden
基金
瑞典研究理事会;
关键词
MOSSBAUER EMISSION-SPECTROSCOPY; ASSISTED SYNTHESIS; EVOLUTION; SURFACE; NANOPARTICLES; HYDRODESULFURIZATION; PERFORMANCE; ADSORPTION; NANOSHEETS; NANOTUBES;
D O I
10.1039/d0ra05560c
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The high catalytic activity of cobalt-doped MoS2(Co-MoS2) observed in several chemical reactions such as hydrogen evolution and hydrodesulfurization, among others, is mainly attributed to the formation of the CoMoS phase, in which Co occupies the edge-sites of MoS2. Unfortunately, its production represents a challenge due to limited cobalt incorporation and considerable segregation into sulfides and sulfates. We, therefore, developed a fast and efficient solid-state microwave irradiation synthesis process suitable for producing thin Co-MoS(2)flakes (similar to 3-8 layers) attached on nitrogen-doped reduced graphene oxide. The CoMoS phase is predominant in samples with up to 15 at% of cobalt, and only a slight segregation into cobalt sulfides/sulfates is noticed at larger Co content. The Co-MoS(2)flakes exhibit a large number of defects resulting in wavy sheets with significant variations in interlayer distance. The catalytic performance was investigated by evaluating the activity towards the hydrogen evolution reaction (HER), and a gradual improvement with increased amount of Co was observed, reaching a maximum at 15 at% with an overpotential of 197 mV at -10 mA cm(-2), and a Tafel slope of 61 mV dec(-1). The Co doping had little effect on the HER mechanism, but a reduced onset potential and charge transfer resistance contributed to the improved activity. Our results demonstrate the feasibility of using a rapid microwave irradiation process to produce highly doped Co-MoS(2)with predominant CoMoS phase, excellent HER activity, and operational stability.
引用
收藏
页码:34323 / 34332
页数:10
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