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Hydrogen Evolution Reaction Property of Molybdenum Disulfide/Nickel Phosphide Hybrids in Alkaline Solution

机译:碱性溶液中二硫化钼/磷化镍杂化物的析氢反应特性

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The hydrogen evolution reaction (HER) property of molybdenum disulfide (MoS 2 ) is undesirable because of the insufficient active edge sites and the poor conductivity. To enhance HER performance of MoS 2 , nickel phosphide (Ni 2 P) was combined with this catalyst and three MoS 2 /Ni 2 P hybrids (38 wt % Ni 2 P addition for MoS 2 /Ni 2 P-38, 50 wt % Ni 2 P addition for MoS 2 /Ni 2 P-50, and 58 wt % Ni 2 P addition for MoS 2 /Ni 2 P-58) were fabricated via a hydrothermal synthesis process. Morphologies, crystallinities, chemical components, specific surface areas, and HER properties of the fabricated MoS 2 /Ni 2 P samples in an alkaline electrolyte were characterized and tested. In addition, the insight into the HER properties of as-prepared catalysts were revealed by the density functional theory (DFT) calculation. Additionally, the stabilities of pure MoS 2 , Ni 2 P, and MoS 2 /Ni 2 P-50 samples were evaluated. The results show that the addition of Ni 2 P can enhance the HER property of the MoS 2 catalyst. Although HER properties of the above-mentioned three MoS 2 /Ni 2 P hybrids are inferior to that of pure Ni 2 P, they are much higher than that of MoS 2 . Among as-prepared three hybrids, MoS 2 /Ni 2 P-50 exhibits the best HER performance, which may be due to its uniform morphology, large specific surface area, and excellent stability. The MoS 2 /Ni 2 P-50 hybrid shows a high cathodic current density (70 mA/cm 2 at ?0.48 V), small Tafel slope (~58 mV/decade), and a low charge transfer resistance (0.83 kΩ·cm 2 ).
机译:二硫化钼(MoS 2)的析氢反应(HER)性质是不理想的,因为其活性边缘位点不足且导电性差。为了提高MoS 2的HER性能,将磷化镍(Ni 2 P)与该催化剂和三个MoS 2 / Ni 2 P杂化物(对于MoS 2 / Ni 2 P-38,添加38 wt%Ni 2 P,50 wt%通过水热合成工艺制备了用于MoS 2 / Ni 2 P-50的Ni 2 P添加和用于MoS 2 / Ni 2 P-58的58 wt%Ni 2 P添加。表征并测试了在碱性电解质中制备的MoS 2 / Ni 2 P样品的形貌,结晶度,化学成分,比表面积和HER特性。另外,通过密度泛函理论(DFT)计算揭示了对所制备催化剂的HER性能的见解。此外,评估了纯MoS 2,Ni 2 P和MoS 2 / Ni 2 P-50样品的稳定性。结果表明,添加Ni 2 P可以增强MoS 2催化剂的HER性能。尽管上述三种MoS 2 / Ni 2 P杂化物的HER性质均比纯Ni 2 P的HER性质差,但它们远高于MoS 2。在所制备的三种杂化物中,MoS 2 / Ni 2 P-50表现出最佳的HER性能,这可能是由于其均匀的形态,大的比表面积和出色的稳定性。 MoS 2 / Ni 2 P-50杂化物显示出高阴极电流密度(在?0.48 V时为70 mA / cm 2),小的Tafel斜率(〜58 mV /十倍)和低电荷转移电阻(0.83kΩ·cm) 2)。

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