分解水
可再生能源
纳米技术
化学
半导体
近红外光谱
环境友好型
人工光合作用
太阳能
带隙
工程物理
光催化
光电子学
材料科学
光学
电气工程
催化作用
物理
生物化学
生态学
生物
工程类
作者
Ping-Yen Hsieh,Jhen‐Yang Wu,Tso‐Fu Mark Chang,Chun-Yi Chen,Masato Sone,Yung‐Jung Hsu
标识
DOI:10.1016/j.arabjc.2020.05.025
摘要
Photoelectrochemical (PEC) water splitting supplies an environmentally friendly, sustainable approach to generating renewable hydrogen fuels. Oxides semiconductors, e.g. TiO2, BiVO4, and Fe2O3, have been widely developed as photoelectrodes to demonstrate the utility in PEC systems. Even though significant effort has been made to increase the PEC efficiency, these materials are still far from practical applications. The main issue of metal oxides is the wide bandgap energy that hinders effective photons harvesting from sunlight. In solar spectrum, over 40% of the energy is located in the near-infrared (NIR) region. Developing sophisticated PEC systems that can be driven by NIR illumination is therefore essential. This review gives a concise overview on PEC systems based on the use of NIR-driven photoelectrodes. Promising candidates as efficient yet practical NIR-responsive photoelectrodes are suggested and discussed. Future outlooks on the advancement of PEC water splitting are also proposed.
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