CV


FA
Mohammad Mehdi Abolhasani

Mohammad Mehdi Abolhasani

Associate Professor

Full-Time Faculty Member

College: Faculty of Engineering

Department: Chemical Engineering

Degree: Post Doctoral

CV
FA
Mohammad Mehdi Abolhasani

Associate Professor Mohammad Mehdi Abolhasani

Full-Time Faculty Member
College: Faculty of Engineering - Department: Chemical Engineering Degree: Post Doctoral |

A fully biocompatible and biodegradable triboelectric nanogenerator based on PVA/chitosan fibers and PLA fibers with enhanced output performance

Authorsویدا سبزواری,محمد مهدی ابوالحسنی,سارا عظیمی
JournalMaterial Chemistry C
Page number5034
Volume number14
IF5.1
Paper TypeFull Paper
Published At2025-12-30
Journal GradeScientific - research
Journal TypeElectronic
Journal CountryIran, Islamic Republic Of
Journal IndexJCR ,SCOPUS
Keywordsnanogenerator, TENG, biodegradable, nanofiber

Abstract

The integration of biodegradable materials into the design of triboelectric nanogenerators (TENGs) offers a sustainable pathway for energy harvesting. While most prior research has focused on enhancing the performance of tribonegative materials, here we present a novel strategy to improve the tribopositive component. In this work, polyvinyl alcohol (PVA) was blended with chitosan to enhance electron-donating ability through the formation of free hydroxyl groups at the molecular interface, thereby boosting the tribopositive properties of the material. We developed a TENG device composed of PVA/Chitosan fibers paired with PLA fibers. The interaction between PVA and chitosan introduces abundant hydroxyl functionalities, significantly improving surface tribopositivity. The resulting TENG achieved a remarkable power density of 0.018 mW/cm², which is approximately 12 times greater than that of a TENG based on pure PVA fibers. Beyond its impressive output performance, the PVA/Chitosan-based TENG successfully powered small Page 1 of 26 Journal of Materials Chemistry C JournalofMaterialsChemistryCAcceptedManuscriptPublished on 30 December 2025. Downloaded by Universita Degli Studi di Napoli Federico II on 1/7/2026 12:40:00 PM. View Article Online DOI: 10.1039/D5TC03882K electronic devices such as wristwatches and demonstrated excellent biocompatibility and biodegradibility. These results highlight the great potential of this eco-friendly TENG design in next-generation