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Ni_(12)P_5 Nanoparticles as an Efficient Catalyst for Hydrogen Generation via Electrolysis and Photoelectrolysis

机译:Ni_(12)P_5纳米颗粒作为通过电解和光电解制氢的高效催化剂

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摘要

The exploitation of a low-cost catalyst is desirable for hydrogen generation from electrolysis or photoelectrolysis. In this study we have demonstrated that nickel phosphide (Ni_(12)P_5) nanoparticles have efficient and stable catalytic activity for the hydrogen evolution reaction. The catalytic performance of Ni_(12)P_5 nanoparticles is favorably comparable to those of recently reported efficient nonprecious catalysts. The optimal overpotential required for 20 mA/cm2 current density is 143 (3 mV in acidic solution (H_2SO_4, 0.5 M). The catalytic activity of Ni_(12)P_5 is likely to be correlated with the charged natures of Ni and P. Ni_(12)P_5 nanoparticles were introduced to silicon nanowires, and the power conversion efficiency of the resulting composite is larger than that of silicon nanowires decorated with platinum particles. This result demonstrates the promising application potential of metal phosphide in photoelectrochemical hydrogen generation.
机译:对于从电解或光电解产生氢来说,开发低成本催化剂是理想的。在这项研究中,我们已经证明了磷化镍(Ni_(12)P_5)纳米粒子具有有效且稳定的催化活性,可用于氢释放反应。 Ni_(12)P_5纳米粒子的催化性能可与最近报道的有效非贵金属催化剂相比。 20 mA / cm2电流密度所需的最佳超电势为143(酸性溶液(H_2SO_4,0.5 M)中为3 mV。Ni_(12)P_5的催化活性可能与Ni和P的带电性质相关。将(12)P_5纳米粒子引入到硅纳米线中,得到的复合材料的功率转换效率要高于用铂粒子修饰的硅纳米线,这一结果证明了金属磷化物在光电化学制氢中的应用前景。

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