首页> 外文OA文献 >Comparison of the Performance of CoP-Coated and Pt-Coated Radial Junction n^+p-Silicon Microwire-Array Photocathodes for the Sunlight-Driven Reduction of Water to H_2(g)
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Comparison of the Performance of CoP-Coated and Pt-Coated Radial Junction n^+p-Silicon Microwire-Array Photocathodes for the Sunlight-Driven Reduction of Water to H_2(g)

机译:CoP涂层和Pt涂层径向结n ^ + p-硅微丝阵列光电阴极在阳光驱动下将水还原为H_2(g)的性能比较

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摘要

The electrocatalytic performance for hydrogen evolution has been evaluated for radial-junction n^+p-Si microwire (MW) arrays with Pt or cobalt phosphide, CoP, nanoparticulate catalysts in contact with 0.50 M H_2SO_4(aq). The CoP-coated (2.0 mg cm^(–2)) n^+p-Si MW photocathodes were stable for over 12 h of continuous operation and produced an open-circuit photovoltage (V_(oc)) of 0.48 V, a light-limited photocurrent density (J_(ph)) of 17 mA cm^(–2), a fill factor (ff) of 0.24, and an ideal regenerative cell efficiency (η_(IRC)) of 1.9% under simulated 1 Sun illumination. Pt-coated (0.5 mg cm^(–2)) n^+p-Si MW-array photocathodes produced V_(oc) = 0.44 V, J_(ph) = 14 mA cm^(–2), ff = 0.46, and η = 2.9% under identical conditions. Thus, the MW geometry allows the fabrication of photocathodes entirely comprised of earth-abundant materials that exhibit performance comparable to that of devices that contain Pt.
机译:已对与Pt或磷化钴,CoP纳米颗粒催化剂与0.50 M H_2SO_4(aq)接触的径向结n ^ + p-Si微线(MW)阵列评估了析氢的电催化性能。 CoP涂层(2.0 mg cm ^(– 2))n ^ + p-Si MW光电阴极在连续运行12小时以上均稳定,并产生0.48 V的开路光电压(V_(oc)),在模拟1太阳照射下,光电流密度(J_(ph))的极限值为17 mA cm ^(– 2),填充因子(ff)为0.24,理想的再生电池效率(η_(IRC))为1.9%。 Pt涂层(0.5 mg cm ^(– 2))n ^ + p-Si MW阵列光电阴极产生V_(oc)= 0.44 V,J_(ph)= 14 mA cm ^(– 2),ff = 0.46,在相同条件下,η= 2.9%。因此,MW的几何形状允许制造完全由富含地球的材料构成的光电阴极,其光电性能与含Pt的器件相当。

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