Jakubow-Piotrowska Katarzyna, Witkowski Bartłomiej, Augustynski Jan
Centre of New Technologies, University of Warsaw, S. Banacha 2c, 02-097, Warsaw, Poland.
Faculty of Chemistry, University of Warsaw, Pasteura 1, 02-093, Warsaw, Poland.
Commun Chem. 2022 Oct 13;5(1):125. doi: 10.1038/s42004-022-00745-w.
Coupling the photo-oxidation of biomass derived substrates with water splitting in a photoelectrochemical (PEC) cell is a broadly discussed approach intended to enhance efficiency of hydrogen generation at the cathode. Here, we report a PEC device employing a nanostructured semitransparent WO photoanode that, irradiated with simulated solar light achieves large photocurrents of 6.5 mA cm through oxidation of glucose, a common carbohydrate available in nature that can be obtained by processing waste biomass. The attained photocurrents are in a large part due to the occurrence of the photocurrent doubling, where oxidation of glucose by the photogenerated positive hole is followed by injection by the formed intermediate of an electron into the conduction band of WO Selection of an appropriate supporting electrolyte enabled effective reforming of glucose into valuable products: gluconic and glucaric acids, erythrose and arabinose with up to 64% total Faradaic yield attained at ca 15% glucose conversion.
将生物质衍生底物的光氧化与光电化学(PEC)电池中的水分解相结合,是一种被广泛讨论的旨在提高阴极产氢效率的方法。在此,我们报道了一种采用纳米结构半透明WO光阳极的PEC装置,该装置在模拟太阳光照射下,通过氧化葡萄糖实现了6.5 mA cm的大光电流,葡萄糖是自然界中常见的碳水化合物,可通过处理废弃生物质获得。所获得的光电流很大程度上归因于光电流加倍的发生,即光生空穴氧化葡萄糖后,形成的中间体将电子注入WO的导带。选择合适的支持电解质能够使葡萄糖有效地重整为有价值的产物:葡萄糖酸和葡萄糖二酸、赤藓糖和阿拉伯糖,在约15%的葡萄糖转化率下,总法拉第产率高达64%。