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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Greatly boosting electrochemical hydrogen evolution reaction over Ni3S2 nanosheets rationally decorated by Ni3Sn2S2 quantum dots
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Greatly boosting electrochemical hydrogen evolution reaction over Ni3S2 nanosheets rationally decorated by Ni3Sn2S2 quantum dots

机译:通过Ni3Sn2S2量子点合理装饰的Ni3S2纳米蛋白纳米电化学氢进化反应大大提高了电化学氢进化反应

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The electrode kinetics of hydrogen evolution reaction (HER) greatly relies on both strong water absorption and strong H atom desorption for fast electron transfer while prompting hydrogen evolution, but it is very challenging to achieve due to the tough trading off between water absorption and H-desorption ability of the catalyst. Herein, a unique high-surficial multi-heteroatomic catalytic process is realized by rationally design and tailor Ni3Sn2S2 dots-decorated thin Ni3S2 nanosheets to form sheets-on-sheets array self-supported electrode by simple hydrothermal process. The formed Ni3Sn2S2@Ni3S2-2 NF delivers a superior performance very close to the noble catalyst (Pt/C) at low current densities with an onset-potential of nearly 0 mV and overpotentials of 50.7 mV at 10 mA cm(-2) while surprisingly surpassing Pt/C at high current densities. The outstanding HER performance of the catalyst can be ascribed that the rationally tuned multi-heterogeneous interfaces and electronic structure control can realize both strong water absorption and strong H atom desorption to not only significantly promotes fast electron transfer, but also greatly enhances the gas release toward efficient HER. This work holds a great promise to fabricate a non-noble HER catalyst for high-performance close to the noble catalysts such as Pt/C while shedding a light on fundamentals to guide construction of high-surficial heteroatomic multi-heterogeneous catalysts with superior performance.
机译:氢进化反应(她)的电极动力学极大地依赖于在促使氢气进化的同时快速电子转移的强吸水和强H原子解吸,但由于吸水率和H-之间的艰难交易而实现这一目标是非常具有挑战性的催化剂的解吸能力。这里,通过合理的设计和裁缝Ni3Sn2S2点装饰的薄Ni3s2纳米片来实现独特的高曲面多杂原子催化过程,以通过简单的水热法形成片状阵列自支撑电极。形成的Ni3SN2S2 @ Ni3S2-2NF在低电流密度下释放出非常接近贵催化剂(Pt / c)的优异性能,其发病电位在近0 mV和50.7mV的过电位,而在10 mA cm(-2)时在高电流密度下令人惊讶地超过Pt / c。催化剂的优异性能可以归因于合理调谐的多异构接口和电子结构控制可以实现强大的吸水性和强H原子解吸,而不仅显着促进快速电子转移,而且大大提高了气体释放高效她。这项工作具有很大的承诺,以制造非高贵的催化剂,用于靠近贵催化剂,例如Pt / c,同时在基本上缩小光,以引导具有优异性能的高曲面杂原子多相催化剂的构建。

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