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Sulfur and Nitrogen Dual-Doped Molybdenum Phosphide Nanocrystallites as an Active and Stable Hydrogen Evolution Reaction Electrocatalyst in Acidic and Alkaline Media

机译:硫和氮双掺杂钼磷化物纳米晶体作为酸性和碱性介质的活性和稳定的氢气进化反应电催化剂

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摘要

Sulfur and nitrogen dual-doped molybdenum phosphides (MoP/SN) are synthesized via a (thio)ureaphosphate-assisted strategy in which the reductant (thio)urea acts as S and N source and phosphoric acid provides the P atom. The MoP/SN nanoparticles are generated by in situ phosphidation of indigenously synthesized ammonium phosphate-coated P-doped MoSx nanoparticles in a hydrogen atmosphere. Then, MoP/SN is anchored on graphene to obtain a hybrid electrocatalyst (MoP/SNG) that exhibits high activity and stability for electrochemical hydrogen evolution from water in both acidic and basic electrolytes, outperforming most MoP-based electrocatalysts reported in the literature. The dual doping and hybridization with graphene enhance electron conductivity of MoP and stabilize small MoP nanoparticles to increase activity and stability, especially in acid electrolytes.
机译:通过(硫代)通过(硫代)的磷酸磷酸溶解的策略合成硫和氮双掺杂的磷化钼(MOP / Sn),其中还原剂(ThiO)尿素作用于S和N源和磷酸提供P原子。 通过在氢气氛中以原位合成的磷酸铵涂覆的磷酸铵的p掺杂的p掺杂的MOSX纳米颗粒原位磷化镁锰纳米粒子。 然后,将MOP / Sn固定在石墨烯上,得到杂种电催化剂(MOP / SNG),其在酸性和基本电解质中的水中具有高活性和稳定性,从而优于文献中报告的大多数拖把的电催化剂。 具有石墨烯的双重掺杂和杂交增强了拖把的电子电导率,并稳定小拖把纳米颗粒以增加活性和稳定性,特别是在酸电解质中。

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