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首页> 外文期刊>Materials Research Bulletin >Hierarchical heterostructure based on molybdenum dichalcogenide nanosheets assembled nitrogen doped graphene layers for efficient hydrogen evolution reaction
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Hierarchical heterostructure based on molybdenum dichalcogenide nanosheets assembled nitrogen doped graphene layers for efficient hydrogen evolution reaction

机译:基于二卤化钼纳米片的分层异质结构组装了氮掺杂石墨烯层,以实现有效的氢释放反应

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摘要

A novel hierarchical heterostructure of molybdenum dichalcogenide nanosheets homogeneously assembled on nitrogen doped graphene layer (MoS2 NSs/N-doped GR) was successfully developed by an easy and cost-effective strategy. The MoS2 NSs/N-doped GR was then utilized for accelerating hydrogen evolution reaction (HER) in alkaline medium. It was found that the nanohybrid exhibited highly efficient catalytic activity towards HER with higher current density and smaller overpotential as compared to those of other synthesized materials. In this context, the nanohybrid required an overpotential of only 208 mV to achieve a current density of 10 mA cm(-2), along with a small Tafel slope of 79 mV dec(-1), which is close to those of a commercial Pt/C. An outstanding stability of the nanohybrid for long-term operation was also demonstrated. The obtained results suggest that the MoS2 NSs/N-doped GR nanohybrid can be a potential candidate for HER in overall water splitting application.
机译:通过简单且经济高效的策略成功开发了均匀地组装在氮掺杂石墨烯层(MoS2 NSs / N掺杂GR)上的新型二卤化钼纳米片的分层异质结构。然后,将MoS2 NSs / N掺杂的GR用于在碱性介质中加速氢释放反应(HER)。已发现,与其他合成材料相比,纳米杂化物表现出对HER的高效催化活性,具有更高的电流密度和更小的过电势。在这种情况下,纳米杂化仅需208 mV的超电势即可实现10 mA cm(-2)的电流密度,以及79 mV dec(-1)的小Tafel斜率,这接近于商用铂/碳。还证明了纳米杂化剂可长期运行的出色稳定性。获得的结果表明,在整个水分解应用中,MoS2 NSs / N掺杂的GR纳米杂化物可能是HER的潜在候选者。

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