Laser-induced graphene hybrid photoelectrode for enhanced photoelectrochemical detection of glucose

石墨烯 电催化剂 材料科学 纳米技术 半导体 纳米复合材料 电极 生物传感器 氧化物 激光器 电导率 化学工程 光电子学 电化学 化学 冶金 光学 工程类 物理化学 物理
作者
Hui Li,Chengxiang Guo,Changchun Liu,Lei Ge,Feng Li
出处
期刊:Analyst [Royal Society of Chemistry]
卷期号:145 (11): 4041-4049 被引量:21
标识
DOI:10.1039/d0an00252f
摘要

The combination of an electrocatalyst with a semiconductor light absorber is of great importance to increase the efficiency of photoelectrochemical (PEC) glucose detection. Here, in situ and synchronous fabrication of a Ni-based electrocatalyst (NiEC) and CdS semiconductor in laser-induced graphene (LIG) on indium-tin oxide glass is demonstrated via a one-step laser-induced solid phase transition. A series of component and structural characterization experiments suggest that the laser-induced NiEC uniformly disperses in the hybrid nanocomposite and exists mainly in the Ni0 and NiO states. Moreover, both electrochemical and PEC investigations confirm that the as-prepared hybrid photoelectrode exhibits excellent photoelectrocatalytic ability towards glucose, which is not only attributed to the strong synergistic interaction between CdS and NiEC, but also benefited from the high conductivity as well as 3D macroporous configuration of the simultaneously formed LIG, providing the key factor to achieve sensitive non-enzymatic PEC glucose sensors. Therefore, the laser-induced hybrid photoelectrode is then applied to the PEC detection of glucose, and a low detection limit of 0.4 μM is obtained with good stability, reproducibility, and selectivity. This study provides a promising paradigm for the facile and binder-free fabrication of an electrocatalyst-semiconductor-graphene hybrid photoelectrode, which will find potential applications in sensitive PEC biosensing for a broad range of analytes.

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