In this paper we propose a detailed investigation on the electrical response of Organic Field Effect Transistors (OFETs) assembled on flexible plastic substrates to mechanical deformations. We will demonstrate that, by applying a surface deformation by an external mechanical stimulus we are inducing morphological and structural changes in the organic semiconductor, giving rise to a marked, reproducible and reversible variation of the device output current. We will show how the intrinsic properties of the employed active layers play a crucial role in determining the final sensitivity to the mechanical deformation. Finally we will also demonstrate that the fabricated flexible system can be successfully employed for different applications that go from the detection of biomechanical parameters (joints motion, breath rate, etc.) in the wearable electronics field, to tactile transduction for the realization of artificial “robot skins”.

Organic bendable and stretchable field effect devices for sensing applications / P Cosseddu; S Lai; A Loi; A Bonfiglio; L Basirico. - ELETTRONICO. - (2012), pp. 224-227. (Intervento presentato al convegno 11th IEEE Sensors Conference tenutosi a Taipei, TAIWAN nel OCT 28-31, 2012) [10.1109/ICSENS.2012.6411281].

Organic bendable and stretchable field effect devices for sensing applications

BASIRICO', LAURA
2012

Abstract

In this paper we propose a detailed investigation on the electrical response of Organic Field Effect Transistors (OFETs) assembled on flexible plastic substrates to mechanical deformations. We will demonstrate that, by applying a surface deformation by an external mechanical stimulus we are inducing morphological and structural changes in the organic semiconductor, giving rise to a marked, reproducible and reversible variation of the device output current. We will show how the intrinsic properties of the employed active layers play a crucial role in determining the final sensitivity to the mechanical deformation. Finally we will also demonstrate that the fabricated flexible system can be successfully employed for different applications that go from the detection of biomechanical parameters (joints motion, breath rate, etc.) in the wearable electronics field, to tactile transduction for the realization of artificial “robot skins”.
2012
2012 IEEE SENSORS PROCEEDINGS
224
227
Organic bendable and stretchable field effect devices for sensing applications / P Cosseddu; S Lai; A Loi; A Bonfiglio; L Basirico. - ELETTRONICO. - (2012), pp. 224-227. (Intervento presentato al convegno 11th IEEE Sensors Conference tenutosi a Taipei, TAIWAN nel OCT 28-31, 2012) [10.1109/ICSENS.2012.6411281].
P Cosseddu; S Lai; A Loi; A Bonfiglio; L Basirico
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/399123
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