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Synergistic effects of charge transport and trapping in tribomaterials for boosted triboelectric nanogenerators

Nano Energy [2023]
Youbo Nan, Xiutong Wang, Hui Xu, Yan Wu, Hui Zhou, Yanan Sun, Teng Yu, Yanliang Huang
ABSTRACT

Improving output performance is a key to develop triboelectric nanogenerator (TENG) applications. Herein, an improved melamine foam (MF) /MXene/Ecoflex@TiO 2 -TENG (FME@TiO 2 -TENG) based on the composite dielectric MF/MXene/Ecoflex@TiO 2 (FME@TiO 2 ) is developed after comprehensively considering charge generation, transport, trapping, and dissipation. A 3D MF framework with evenly dispersed MXene exhibits strong electronegativity , electrical conductivity , and a formation of a large number of micro-capacitances, which are advantageous for surface charge generation, transfer, and retention in the composite dielectric FME@TiO 2 . More importantly, dual functions of a TiO 2 nanotube array film, i.e., its high dielectric property and electron-trapping ability, are beneficial for output of electrical properties. A cathodic protection system powered by the FME@TiO 2 -TENG was designed to demonstrate its application potential in electrochemistry. Furthermore, a novel in-situ micro-electrolytic cell observation system using K 3 [Fe (CN) 6 ] as an indicator was designed to evaluate the cathodic protection effect. The results showed that the FME@TiO 2 -TENG could be used as an independent power source to provide electrochemical cathodic protection. This study provides a useful guidance for a development of the high-performance TENG composite dielectrics and promotes their practical application in the field of the electrochemical cathodic protection.

MATERIALS

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