Zhang Fu-Qiang, Hu Ya, Sun Rui-Nan, Fu Haoxin, Peng Kui-Qing
Department of Physics and Beijing Key Laboratory of Energy Conversion and Storage Materials, Beijing Normal University, Beijing, China.
Front Chem. 2019 Apr 3;7:206. doi: 10.3389/fchem.2019.00206. eCollection 2019.
Solar water splitting represents one of the most promising strategies in the quest for clean and renewable energy. However, low conversion efficiency, use of sacrificial agents, and external bias for current water splitting system limit its practical application. Here, a gold-sensitized Si/ZnOcore/shell nanowire photoelectrochemical (PEC) cell is reported for efficient solar water oxidation. We demonstrated gold-sensitized n-Si/n-ZnO nanowire arrays exhibited higher energy conversion efficiency than gold-sensitized p-Si/n-ZnO nanowire arrays due to the favorable energy-band alignment characteristics. Without any assistance from an external electrical source and sacrificial reagents, gold-sensitized n-Si/n-ZnO core/shell nanowire array photoanode achieved unbiased water splitting under simulated solar light illumination. This method opens a promising venue to cost-efficient production of solar fuels.
太阳能水分解是寻求清洁和可再生能源最具前景的策略之一。然而,当前水分解系统的低转换效率、牺牲剂的使用以及外部偏压限制了其实际应用。在此,报道了一种用于高效太阳能水氧化的金敏化Si/ZnO核壳纳米线光电化学(PEC)电池。我们证明,由于有利的能带对准特性,金敏化的n-Si/n-ZnO纳米线阵列比金敏化的p-Si/n-ZnO纳米线阵列表现出更高的能量转换效率。在没有外部电源和牺牲试剂的任何辅助下,金敏化的n-Si/n-ZnO核壳纳米线阵列光阳极在模拟太阳光照射下实现了无偏压水分解。该方法为太阳能燃料的低成本生产开辟了一条有前景的途径。