Electrical Sensing of Molecular Spin State Switching in a Spin Crossover Complex Using an Organic Field‐Effect Transistor

Author:

Zhang Yuteng12,Alavi Seyed Ehsan1,Soroceanu Ion3,Kamau Dennis Wanyoike2,Rotaru Aurelian3,Séguy Isabelle2,Salmon Lionel1,Molnár Gábor1ORCID,Bousseksou Azzedine1

Affiliation:

1. LCC CNRS University of Toulouse UPS INP Toulouse F‐31077 France

2. LAAS CNRS, University of Toulouse INSA UPS Toulouse F‐31077 France

3. Faculty of Electrical Engineering and Computer Science and MANSiD Research Center Stefan cel Mare University 13, Strada Universitatii Suceava 720229 Romania

Abstract

AbstractAn organic semiconductor – spin crossover polymer composite heterostructure is fabricated, and it is integrated into an organic field‐effect transistor (OFET) with the aim to achieve electrical sensing of molecular spin state switching events. The OFETs display ≈50–70% increase in drain‐source current intensity when going from the low spin (LS) to the high spin (HS) state. This phenomenon is reversible without apparent fatigue and the application of a gate voltage significantly enhances the sensing sensitivity. Capacitance measurements and finite element calculations allow identifying mechanical stress, induced by the spin state switching, at the origin of the transistor response. These results open up appealing perspectives for the integration of spin crossover molecules into technological applications, such as soft robotics .

Funder

H2020 European Research Council

Agence Nationale de la Recherche

Publisher

Wiley

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