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Updated: Jan 13, 2026

Translating Extracellular Electron Transfer Activities with Organic Electrochemical Transistors
Published on: January 31, 2025
Self-Powered Organic Photoelectrochemical Transistor Detection
Chunwang Chai1, Yang Zhao1, Hanxiao He1
1Hebei Key Laboratory of Nano-Biotechnology, College of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao 066004, China.
Abstract:
Organic photoelectrochemical transistor (OPECT) holds significant promise for bioanalysis, but its application is constrained by dual-voltage requirements. Here, we constructed a Bi-MOF@CdS@Au/DNA-gated self-powered OPECT for enrofloxacin (ENR) detection by integrating a solar cell between the source and drain electrodes. The presence of ENR initiates specific binding with the aptamer, which induces aptamer dissociation from the electrode surface and, consequently, enhances electron transfer efficiency. This enhances the photogenerated gate voltage and promotes cation migration, leading to a marked decrease in channel current (IDS). The platform demonstrates good analytical capabilities, showing a wide linear detection range from 100 pg/mL to 100 μg/mL (R2 = 0.993) with a detection limit of 0.568 pg/mL (S/N = 3). This work demonstrates that the self-powered OPECT provides a promising platform for environmental monitoring applications.
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