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In-situ & operando organiC electrochemical transistors monitored by non-destructive spectroscopies for Organic cmos-like NeuromorphIc Circuits
In-situ & operando organiC electrochemical transistors monitored by non-destructive spectroscopies for Organic cmos-like NeuromorphIc Circuits Ultra-flexible, conformable and implantable artificial intelligence organic electronic devices hold promise to revolutionize the real-time monitoring and treatment of chronic diseases. Such devices are based on organic electrochemical transistors (OECTs) exploiting polymeric mixed ion-to-electron conductors (PMIECs) as active layers. However, the development of efficient and stable devices is hindered by limited knowledge about structure-property relationships of PMIECs. ICONIC combines macromolecular synthesis with in situ and operando non-destructive spectroscopic methods in an innovative way to investigate with unprecedented accuracy ion-to-electron transduction in OECTs, from the molecular to the micrometre scale. This provides the key knowledge to make a technological leap in development of smart therapeutic devices. As a proof of concept, ICONIC develops an intelligent closed-loop device for drug-delivery activation. In a lo
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- recordType
- award
- status
- SIGNED
- region
- EU
- value
- 2664940
- unit
- EUR
Evidence & attribution
European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.
License: CORDIS reuse policy
First collected: 2026-09-20T02:21:08.944Z. This is not the publication date.