We report results regarding the possibility of driving an organic memristive device as a transistor, so applying a modulatory gate voltage. Even if transistors and organic memristive device have different working principles, they share the same electrode structure (e.g. gate, source and drain electrode). For memristive standard operational mode, the gate electrode must be used just as reference electrode, biased to ground potential while, in this work, we explored the action of different bias on the output current between the drain and source electrodes

Organic memristive device as transistor: Working principle and possible applications

Silvia Battistoni;Victor Erokhin
2017

Abstract

We report results regarding the possibility of driving an organic memristive device as a transistor, so applying a modulatory gate voltage. Even if transistors and organic memristive device have different working principles, they share the same electrode structure (e.g. gate, source and drain electrode). For memristive standard operational mode, the gate electrode must be used just as reference electrode, biased to ground potential while, in this work, we explored the action of different bias on the output current between the drain and source electrodes
2017
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM
9781509042401
Memristors
Organic Memristor
Polyaniline
Transistor
organic electronics
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/357430
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