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Peculiar transient behaviors of organic electrochemical transistors governed by ion injection directionality

Ji Hwan Kim, Roman Halaksa, Il‐Young Jo, Hyungju Ahn, Peter A. Gilhooly‐Finn, Inho Lee, Sungjun Park, Christian B. Nielsen, Myung‐Han Yoon

2023Nature Communications35 citationsDOIOpen Access PDF

Abstract

Despite the growing interest in dynamic behaviors at the frequency domain, there exist very few studies on molecular orientation-dependent transient responses of organic mixed ionic-electronic conductors. In this research, we investigated the effect of ion injection directionality on transient electrochemical transistor behaviors by developing a model mixed conductor system. Two polymers with similar electrical, ionic, and electrochemical characteristics but distinct backbone planarities and molecular orientations were successfully synthesized by varying the co-monomer unit (2,2'-bithiophene or phenylene) in conjunction with a novel 1,4-dithienylphenylene-based monomer. The comprehensive electrochemical analysis suggests that the molecular orientation affects the length of the ion-drift pathway, which is directly correlated with ion mobility, resulting in peculiar OECT transient responses. These results provide the general insight into molecular orientation-dependent ion movement characteristics as well as high-performance device design principles with fine-tuned transient responses.

Topics & Concepts

Materials scienceElectrochemistryIonTransient (computer programming)Ionic bondingChemical physicsTransistorMonomerDirectionalityElectrical conductorNanotechnologyElectrodeOptoelectronicsPolymerChemistryVoltageComputer scienceElectrical engineeringPhysical chemistryOrganic chemistryComposite materialGeneticsBiologyOperating systemEngineeringConducting polymers and applicationsOrganic Electronics and PhotovoltaicsOrganic Light-Emitting Diodes Research