光电流
异质结
三元运算
材料科学
表面等离子共振
分解水
等离子体子
纳米技术
光电子学
半导体
纳米颗粒
化学工程
化学
催化作用
光催化
计算机科学
工程类
生物化学
程序设计语言
作者
Shouli Bai,Shiyu Jia,Sitong Yan,Yingying Zhao,Pinggui Tang,Ruixian Luo,Yongjun Feng,Dianqing Li,Aifan Chen
标识
DOI:10.1016/j.ijhydene.2023.11.192
摘要
Solar energy is used as a driving force to create electron-hole pairs on the surface of electrodes, releasing hydrogen and oxygen through oxidative reductionism, which can directly generate clean energy by a lower resource and environmental costs. The novel ternary photoanode was successfully prepared by Bi nanoparticles modified on BiVO4/ZnFe2O4 heterojunction using simple and effective SILAR and impregnation reduction method. Based on the successful construction of heterostructure to accelerate the separation of electron-hole pairs, the addition of plasmonic nanoarchitectures can effectively capture photons and improve the water oxidation performance of semiconductors through the localized surface plasmon resonance (LSPR). The ternary photoanode shows a significant improvement with bare BiVO4 photoanode, its photocurrent density reachs 2.72 mA cm−2 at 1.23 V (vs. RHE), which is 4.2 times higher than that of pure BiVO4 photoanode (0.65 mA cm−2). The IPCE and the ABPE are substantially increased by 2.7 times and 5 times higher than single component, respectively.
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