Skin electronics for health monitoring require materials and devices with unique properties such as biocompatibility, flexibility, and high sensitivity. In this work, we describe our recent work in exploiting piezoelectric thin films, based on either aluminum nitride (AlN) or chitosan biopolymers, for skin-compliant transducers to record biomechanical signals on skin.

Biocompatible and Flexible Piezoelectric Thin Film Materials and Devices for Skin Compliant Transducers / Mastronardi, V. M.; De Marzo, G.; Fachechi, L.; Rizzi, F.; Demir, S. M.; Shumba, A. T.; Antonaci, V.; Todaro, M. T.; De Fazio, R.; Patrono, L.; Visconti, P.; De Vittorio, M.. - ELETTRONICO. - (2023), pp. 428-433. (Intervento presentato al convegno 2023 IEEE Nanotechnology Materials and Devices Conference (NMDC) tenutosi a Paestum (ITA) nel October 22-25, 2023) [10.1109/NMDC57951.2023.10344119].

Biocompatible and Flexible Piezoelectric Thin Film Materials and Devices for Skin Compliant Transducers

Mastronardi V. M.;Demir S. M.;De Vittorio M.
2023

Abstract

Skin electronics for health monitoring require materials and devices with unique properties such as biocompatibility, flexibility, and high sensitivity. In this work, we describe our recent work in exploiting piezoelectric thin films, based on either aluminum nitride (AlN) or chitosan biopolymers, for skin-compliant transducers to record biomechanical signals on skin.
2023
979-8-3503-3546-0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2990364