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High‐Hole‐Mobility Fiber Organic Electrochemical Transistors for Next‐Generation Adaptive Neuromorphic Bio‐Hybrid Technologies

Paula Alarcon‐Espejo, Ruben Sarabia‐Riquelme, Giovanni Maria Matrone, Maryam Shahi, Siamak Mahmoudi, Gehan S. Rupasinghe, Vianna N. Le, Antonio M. Mántica, Dali Qian, T. John Balk, Jonathan Rivnay, Matthew C. Weisenberger, Alexandra F. Paterson

2023Advanced Materials29 citationsDOIOpen Access PDF

Abstract

Abstract The latest developments in fiber design and materials science are paving the way for fibers to evolve from parts in passive components to functional parts in active fabrics. Designing conformable, organic electrochemical transistor (OECT) structures using poly(3,4‐ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS) fibers has excellent potential for low‐cost wearable bioelectronics, bio‐hybrid devices, and adaptive neuromorphic technologies. However, to achieve high‐performance, stable devices from PEDOT:PSS fibers, approaches are required to form electrodes on fibers with small diameters and poor wettability, that leads to irregular coatings. Additionally, PEDOT:PSS‐fiber fabrication needs to move away from small batch processing to roll‐to‐roll or continuous processing. Here, it is shown that synergistic effects from a superior electrode/organic interface, and exceptional fiber alignment from continuous processing, enable PEDOT:PSS fiber‐OECTs with stable contacts, high µC * product (1570.5 F cm −1 V −1 s −1 ), and high hole mobility over 45 cm 2 V −1 s −1 . Fiber‐electrochemical neuromorphic organic devices (fiber‐ENODes) are developed to demonstrate that the high mobility fibers are promising building blocks for future bio‐hybrid technologies. The fiber‐ENODes demonstrate synaptic weight update in response to dopamine, as well as a form factor closely matching the neuronal axon terminal.

Topics & Concepts

PEDOT:PSSMaterials scienceBioelectronicsNeuromorphic engineeringConformable matrixFiberNanotechnologyElectrodeConductive polymerTransistorOptoelectronicsPolymerBiosensorComputer scienceVoltageComposite materialElectrical engineeringLayer (electronics)Machine learningEngineeringChemistryPhysical chemistryArtificial neural networkConducting polymers and applicationsAdvanced Sensor and Energy Harvesting MaterialsSupercapacitor Materials and Fabrication