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High efficiency photoelectrochemical water splitting and hydrogen generation using GaN nanowire photoelectrode

机译:使用GaN纳米线光电极的高效光电化学水分解和制氢

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We have studied the photoelectrochemical properties of both undoped and Si-doped GaN nanowire arrays in 1 mol l~(-1) solutions of hydrogen bromide and potassium bromide, which were used separately as electrolytes. It is observed that variations of the photocurrent with bias voltage depend strongly on the n-type doping in GaN nanowires in both electrolytes, which are analyzed in the context of GaN surface band bending and its variation with the incorporation of Si-doping. Maximum incident-photon-to-current-conversion efficiencies of ~15% and 18% are measured for undoped and Si-doped GaN nanowires under ~350 nm light illumination, respectively. Stable hydrogen generation is also observed at a zero bias potential versus the counter-electrode.
机译:我们已经研究了在1 mol l〜(-1)的溴化氢和溴化钾溶液中分别用作电解质的未掺杂和掺杂Si的GaN纳米线阵列的光电化学性质。可以看出,光电流随偏置电压的变化在很大程度上取决于两种电解质中GaN纳米线中的n型掺杂,这是在GaN表面带弯曲及其掺入Si掺杂的情况下进行分析的。对于未掺杂和掺Si的GaN纳米线,在〜350 nm的光照下测得的最大入射光子至电流转换效率分别为〜15%和18%。相对于反电极,在零偏压下也观察到稳定的氢气产生。

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