BiVO4/C3N4 heterojunction-gated organic photoelectrochemical transistor for sensitive detection of neurotransmitter
Cai, Ting and Zhang, Wenran and Charlton, Francessca and Sun, Yali and Chen, Yuxuan and Fu, Ying and Zhang, Qiang and Liu, Shenghua (2025) BiVO4/C3N4 heterojunction-gated organic photoelectrochemical transistor for sensitive detection of neurotransmitter. Biosensors and Bioelectronics, 280. 117444. ISSN 0956-5663 (https://doi.org/10.1016/j.bios.2025.117444)
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Abstract
Developing advanced signal amplification strategies is essential for improving performance of state-of-the-art photoelectrochemical (PEC) analysis and integrated organic electrochemical transistor (OECT) devices. This study introduces a novel approach by integrating a BiVO₄/C₃N₄ heterojunction photoanode with organic photoelectrochemical transistor (OPECT) devices to achieve efficient signal modulation. The BiVO₄/C₃N₄ heterojunction is designed to promote effective charge separation and enhance the photoelectrochemical effect, introducing an efficient dual electrochemical signal amplification strategy. Dopamine (DA), a key neurotransmitter, is used as the target analyte as a proof-of-concept study. It acts as an effective electron donor, directly participating in redox reactions to amplify the channel signal and indirectly modulating the channel response through the BiVO₄/C₃N₄ electrode. The signal amplification results in the signal enhancement of three orders of magnitude. The developed bioanalytical method enables sensitive detection of DA with a good linear range from 10⁻⁷ to 10⁻⁴ M. Importantly, this dual amplification mechanism is independent of interactions between biological recognition molecules and analytes, providing a universal dual electrochemical signal amplification OPECT sensing platform. These findings indicate the potential this device has for the real-time monitoring of neurotransmitter levels, important for neurological disease monitoring.
ORCID iDs
Cai, Ting, Zhang, Wenran, Charlton, Francessca

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Item type: Article ID code: 92538 Dates: DateEvent15 July 2025Published3 April 2025Published Online2 April 2025AcceptedSubjects: Medicine > Biomedical engineering. Electronics. Instrumentation Department: Faculty of Science > Pure and Applied Chemistry Depositing user: Pure Administrator Date deposited: 07 Apr 2025 09:15 Last modified: 17 Apr 2025 08:18 URI: https://strathprints.strath.ac.uk/id/eprint/92538