Abstract
Intelligent wearable devices with integrated sensing and drug-releasing functions are essential for delivering real-time and personalized interventions. Current approaches typically rely on interconnected modules, facing challenges such as large footprint, high energy consumption, and fabrication complexity. To address these limitations, we introduce a modified organic electrochemical transistor structure called the organic electrochemical transceiver (OECTC). The OECTC leverages the electronic wettability switch characteristic of conjugated polymers to convert sensed signals into a valve mechanism for controlling the release of chemical substances (e.g., drugs and neurotransmitters). This provides an all-in- one solution for synchronized signal recording and substance release for physiological modulation. The applications of the OECTC in intelligent wearable devices for managing type II diabetes and as a neural amplifier or inverter for neurotransmitter modulation are demonstrated.
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CITATION STYLE
Li, Y., Yan, M., He, X., Liang, C., Liu, H., Zhu, Q., … Zhao, N. (2025). Organic electrochemical transceiver: An all-in-one sense-and- release device architecture for physiological modulation. Science Advances , 11(37). https://doi.org/10.1126/sciadv.adu9516
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