Enhancing the Performance of Triboelectric Nanogenerator Via Chitosan Films Surface Modification

23 Pages Posted: 6 Feb 2024

See all articles by Jin Han

Jin Han

Anhui University

Jiayao Li

Anhui University

Xing Zhang

Anhui University

Liwei zhao

Anhui University

Chunchang Wang

Anhui University - Laboratory of Dielectric Functional Materials

Abstract

The triboelectric nanogenerator (TENG) has enormous application prospects and research value in energy collection due to its small size, simple structure, and ability to convert mechanical energy into electrical energy output. The microstructure of TENG's friction layer has a significant impact on its output performance. We, herein, proposes a surface modification method by replicating the surface morphology of sandpaper to construct microstructure on the surface of chitosan film or by constructing porous structure using electrospinning technology. Thanks to the significant increase in the effective contact area between the two friction materials, the output performance of the vertical contact-separation TENG with chitosan (Fluorinated ethylene propylene) film being used as a friction positive (negative) material is greatly enhanced. This TENG also exhibits sensitively perceive human movements and has good power supply capabilities. Our results indicate that surface modification of the friction materials is a facile strategy to boost the performance of TENG.

Keywords: Triboelectric Nanogenerator, energy collection, Microstructure, cathodic protection

Suggested Citation

Han, Jin and Li, Jiayao and Zhang, Xing and zhao, Liwei and Wang, Chunchang, Enhancing the Performance of Triboelectric Nanogenerator Via Chitosan Films Surface Modification. Available at SSRN: https://ssrn.com/abstract=4718644 or http://dx.doi.org/10.2139/ssrn.4718644

Jin Han (Contact Author)

Anhui University ( email )

China

Jiayao Li

Anhui University ( email )

China

Xing Zhang

Anhui University ( email )

China

Liwei Zhao

Anhui University ( email )

China

Chunchang Wang

Anhui University - Laboratory of Dielectric Functional Materials ( email )

Hefei
China

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