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首页> 外文期刊>Applied Surface Science >The 3D core-shell heterostructure catalysts by CoNiS nanosheets interfacial assembled on CuO nanorods for efficient water electrolysis
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The 3D core-shell heterostructure catalysts by CoNiS nanosheets interfacial assembled on CuO nanorods for efficient water electrolysis

机译:3D核 - 壳异质结构催化剂通过CONIS纳米蛋白酶界面组装在CUO纳米棒上,用于有效的水电解

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摘要

The development of high-efficiency electrocatalysts is one of the important ways to mass-produce hydrogen but still confronts many challenges. Herein, a 3D core-shell heterostructure catalyst is rationally designed by interfacial assembled of CoNiS nanosheets on CuO nanorods (CuO@CoNiS NRs). The 3D core-shell hetero-structure significantly increases the electrochemical surface area, enabling more active centers to be exposed and facilitating the charge transfer, thus boosting catalytic activity. The catalyst requires low overpotential for HER (96 mV) and OER (246 mV) to achieve 10 mA cm-2 in 1 M KOH. It is capable of attaining 200 mA cm-2 with only 206 mV for HER and achieving 100 mA cm-2 with 314 mV for OER. Meanwhile, CuO@CoNiS NRs as a water electrolyzer to generate 10 mA cm-2 requires a low voltage of 1.52 V. This work provides an effective strategy for developing efficient non-noble metal catalysts by reasonable construction of nanostructure and heterogeneous interface.
机译:高效电催化剂的发展是大规模生产氢的重要方法之一,但仍然面临许多挑战。 这里,3D核 - 壳异质结构催化剂是由CuO纳米棒上的CuO纳米棒(CuO @ Conis NRS)的Conis NanosheS的界面组装的合理设计。 3D核 - 壳杂结构显着增加了电化学表面积,使得更具活性中心待暴露和促进电荷转移,从而提高催化活性。 催化剂需要对她(96mV)和oer(246mV)的低过电位,以在1M KOH中达到10 mA cm-2。 它能够实现200 mA cm-2,仅适用于206 mV,并为oer提供314 mV的100 mA cm-2。 同时,CuO @ Conis NRS作为产生10 mA CM-2的水电解槽需要低电压为1.52 V.这项工作通过合理构建纳米结构和异质界面的合理构建提供了有效的非贵金属催化剂的有效策略。

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