催化作用
氧化还原
材料科学
纳米技术
半导体
氧还原反应
氧气
生物传感器
化学工程
化学
光化学
组合化学
光电子学
无机化学
电极
电化学
有机化学
物理化学
工程类
作者
Ying Qin,Jing Wen,Xiaosi Wang,Lei Jiao,Xiaoqian Wei,Li Wang,Jinli Li,Mingsheng Lyu,Lirong Zheng,Liuyong Hu,Wenling Gu,Chengzhou Zhu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-02-11
卷期号:16 (2): 2997-3007
被引量:85
标识
DOI:10.1021/acsnano.1c10303
摘要
The investigations on the generation, separation, and interfacial-redox-reaction processes of the photoinduced carriers are of paramount importance for realizing efficient photoelectrochemical (PEC) detection. However, the sluggish interfacial reactions of the photogenerated carriers, combined with the need for appropriate photoactive layers for sensing, remain challenges for the construction of advanced PEC platforms. Here, as a proof of concept, well-defined Fe single-atom catalysts (Fe SACs) were integrated on the surface of semiconductors, which amplified the PEC signals via boosting oxygen reduction reaction. Besides, Fe SACs were evidenced with efficient peroxidase-like activity, which depresses the PEC signals through the Fe SACs-mediated enzymatic precipitation reaction. Harnessing the oxygen reduction property and peroxidase-like activity of Fe SACs, a robust PEC sensing platform was successfully constructed for the sensitive detection of acetylcholinesterase activity and organophosphorus pesticides, providing guidelines for the employment of SACs for sensitive PEC analysis.
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