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Single-Atom Co-Decorated MoS_2 Nanosheets Assembled on Metal Nitride Nanorod Arrays as an Efficient Bifunctional Electrocatalyst for pH-Universal Water Splitting

机译:单原子共装MOS_2纳米纸盒组装在金属氮化物纳米座阵列上,作为PH-通用水分裂的有效双官能电催化剂

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摘要

The commercialization of electrochemical water splitting technology requires electrocatalysts that are cost-effective, highly efficient, and stable. Herein, an advanced bifunctional electrocatalyst based on single-atom Co-decorated MoS2 nanosheets grown on 3D titanium nitride (TiN) nanorod arrays (CoSAs-MoS2/TiN NRs) has been developed for overall water splitting in pH-universal electrolytes. When applied as a self-standing cathodic electrode, the CoSAs-MoS2/TiN NRs requires overpotentials of 187.5, 131.9, and 203.4 mV to reach a HER current density of 10 mA cm(-2) in acidic, alkaline, and neutral conditions, respectively, which are superior to the most previously reported non-noble metal HER electrocatalysts at the same current density. The CoSAs-MoS2/TiN NRs anodic electrode also shows low OER overpotentials of 454.9, 340.6, and 508.0 mV, respectively, at a current density of 10 mA cm(-2) in acidic, alkaline, and neutral mediums, markedly outperforming current OER catalysts reported elsewhere. More importantly, an electrolyzer delivered from the cathodic and anodic CoSAs-MoS2/TiN NRs electrodes exhibits an extraordinary overall water splitting performance with good stability and durability in pH-universal conditions.
机译:电化学水分解技术的商业化需要具有成本效益,高效和稳定的电催化剂。这里,已经开发了基于在3D氮化物(TIN)纳米棒(COSAS-MOS2 / TIN NRS)上生长的单原子共同装饰MOS2纳米片的先进的双官能电催化剂,用于在pH-通用电解质中的整个水分解。当施加为自站式阴极电极时,COSAS-MOS2 / TIN NRS需要过电位为187.5,131.9和203.4mV,以达到酸性,碱性和中性条件的10 mA cm(-2)的电流密度,分别优于最先前报道的非高贵金属的电催化剂,其电催化剂在相同的电流密度。 COSAS-MOS2 / TIN NRS阳极电极还显示出454.9,340.6和508.0mV的低OER超势,在酸性,碱性和中性介质中的电流密度为10 mA cm(-2),明显优于电流oer催化剂在其他地方报道。更重要的是,从阴极和阳极COSAS-MOS2 / TIN NRS电极输送的电解槽具有非凡的总水分性能,具有良好的PH-通用条件下的稳定性和耐久性。

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