Son Min-Kyu, Seo Hyunwoong, Watanabe Motonori, Shiratani Masaharu, Ishihara Tatsumi
Molecular Photoconversion Devices Research Division, International Institute for Carbon-Neutral Energy Research(I2CNER), Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
Department of Energy Engineering, Inje University, 197 Inje-ro, Gimhae-si, Gyeongsangnam-do 50834, Republic of Korea.
Nanoscale. 2020 May 7;12(17):9653-9660. doi: 10.1039/d0nr01762k.
Stable photoelectrochemical (PEC) operation is a critical issue for the commercialization of PEC water-splitting systems. Unfortunately, most semiconductor photocathodes generating hydrogen in these systems are unstable in aqueous solutions. This is a huge limitation for the development of durable PEC water-splitting systems. Lanthanum iron oxide (LaFeO3) is a promising p-type semiconductor to overcome this drawback because of its stability in an aqueous solution and its proper energy level for reducing water. In this study, we fabricated a crystalline LaFeO3 thin film by radio frequency magnetron sputtering deposition and a post-annealing process in air for use as a PEC photocathode. Based on the morphological, compositional, optical and electronic characterizations, we found that it was ideal for a visible light-responsive PEC photocathode and tandem PEC water-splitting system with a small band gap absorber behind it. Furthermore, it showed stable PEC performance in a strong alkaline solution during PEC operation without any protection layers. Therefore, the crystalline sputtered LaFeO3 thin film suggested in this study would be feasible to apply as a PEC photocathode for durable, simple and low-cost PEC water splitting.
稳定的光电化学(PEC)运行是PEC水分解系统商业化的关键问题。不幸的是,这些系统中大多数用于产生氢气的半导体光阴极在水溶液中不稳定。这是耐用PEC水分解系统发展的一个巨大限制。氧化镧铁(LaFeO3)是一种很有前途的p型半导体,因其在水溶液中的稳定性以及用于水还原的合适能级,有望克服这一缺点。在本研究中,我们通过射频磁控溅射沉积和在空气中进行后退火工艺制备了一种结晶LaFeO3薄膜,用作PEC光阴极。基于形态、成分、光学和电子表征,我们发现它对于可见光响应的PEC光阴极以及后面带有小带隙吸收体的串联PEC水分解系统是理想的。此外,在PEC运行过程中,它在强碱性溶液中表现出稳定的PEC性能,无需任何保护层。因此,本研究中提出的结晶溅射LaFeO3薄膜作为耐用、简单且低成本PEC水分解的PEC光阴极应用是可行的。