School of Chemical Engineering, Yeungnam University, 280 Daehak-ro, Gyeongsan, 38541, Republic of Korea.
Department of Physics, Kyungpook National University, Daegu, 41566, Republic of Korea.
Sci Rep. 2023 Apr 8;13(1):5776. doi: 10.1038/s41598-023-32804-0.
A heterojunction photocathode of CuO and CuBiO grown on an FTO substrate (FTO/CuO/CuBiO) was synthesized using hydrothermal method followed by spin coating and annealing to overcome the bottlenecks encountered by CuO in photoelectrochemical (PEC) water splitting application. The synthesis methods, morphological, structural properties, and composition of each sample under each synthesis condition are discussed in detail. The photocathode with 15 coating layers annealed at 450 °C exhibited the best PEC performance. Moreover, its current density reached 1.23 mA/cm under an applied voltage of - 0.6 V versus Ag/AgCl in a neutral electrolyte. Additionally, it exhibited higher stability than the bare CuO thin film. The bonding of CuBiO on CuO resulted in close contact between the two semiconductors, helping the semiconductors support each other to increase the PEC efficiency of the photocathode. CuO acted as the electron-generating layer, and the CuBiO layer helped minimize photocorrosion as well as transport the carriers to the electrode/electrolyte interface to accomplish the hydrogen evolution reaction.
在 FTO 基底上生长的 CuO 和 CuBiO 异质结光阴极(FTO/CuO/CuBiO)是通过水热法合成的,然后进行旋涂和退火,以克服氧化铜在光电化学(PEC)水分解应用中遇到的瓶颈。详细讨论了每种合成条件下每个样品的合成方法、形态、结构特性和组成。在 450°C 退火的具有 15 个涂层的光阴极表现出最佳的 PEC 性能。此外,在中性电解质中,在施加的电压为-0.6V 相对于 Ag/AgCl 时,其电流密度达到 1.23 mA/cm。此外,它比裸 CuO 薄膜具有更高的稳定性。CuBiO 在 CuO 上的键合导致两种半导体之间的紧密接触,有助于半导体相互支撑,从而提高光阴极的 PEC 效率。CuO 充当电子产生层,而 CuBiO 层有助于最小化光腐蚀并将载流子输送到电极/电解质界面以完成析氢反应。