EventsThe 12th International Electronic Conference on Sensors and Applications
Published
This submission belongs to the session S1. Chemo- and Biosensors of the event The 12th International Electronic Conference on Sensors and Applications
Published date
07 Nov, 2025
Academic Editor
author-avatarStefano Mariani
Citation
Enzo Nascimento, Guilherme Roveri, Fabio Romano Lofrano Dotto, Pedro De Oliveira Conceição Junior, Andre Capaldo Amaral, Alessandro Roger Rodrigues, Study of the Influence of Silk Fibroin on 3D-Printed G/PLA Sensors for Biological Detection Applications, in Proceedings of The 12th International Electronic Conference on Sensors and Applications, 12 November–14 November 2025, MDPI: Basel, Switzerland, doi: 10.3390/ECSA-12-26484
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Study of the Influence of Silk Fibroin on 3D-Printed G/PLA Sensors for Biological Detection Applications

Guilherme Roveri 2
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1. Universidade de São Paulo, Escola de Engenharia de São Carlos, Departamento de Engenharia Elétrica. Avenida Trabalhador São-carlense, 400 Parque Arnold Schimidt 13566590 - São Carlos, SP - Brasil, Brazil
2. Universidade de Araraquara, Programa de Pós-Graduação em Biotecnologia. Rua Carlos Gomes - 1217 - Unidade II, 3 andar Centro 14801340 - Araraquara, SP - Brasil, Brazil
3. Universidade de Araraquara, Programa de Pós-Graduação em Biotecnologia. Rua Carlos Gomes - 1217 - Unidade II, 3 andar Centro 14801340 - Araraquara, SP - Brasil, Brazil
4. Universidade de São Paulo, Escola de Engenharia de São Carlos, Departamento de Engenharia Elétrica. Avenida Trabalhador São-carlense, 400 Parque Arnold Schimidt 13566590 - São Carlos, SP - Brasil, Brazil
5. Universidade de São Paulo, Escola de Engenharia de São Carlos, Departamento de Engenharia Mecânica. Av. Trabalhador São-Carlense, 400 Centro 13566590 - São Carlos, SP - Brasil, Brazil
Abstract

The demand for low-cost, portable, and sensitive analytical devices has fueled the development of 3D-printed biosensors. This study evaluates the effect of silk fibroin incorporation on the electrical properties of graphite-PLA electrodes manufactured via 3D printing. Electrochemical Impedance Spectroscopy (EIS) method was utilized to assess capacitive–resistive behavior under dry conditions, and with PBS buffer, at fibroin concentrations of 0%, 0.04%, 0.4%, and 4%. Fibroin modulated impedance magnitude values without a clear trend, indicating the presence of additional influencing factors. The results promote better understanding of biofunctionalization effects in 3D-printed electrodes and support their potential for biomedical, environmental, and industrial sensing applications.

Keywords
biosensor
3D printing
impedance
silk fibroin
Manuscript
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