The Influence of Discontinuity‐Induced Fringing Effect on the Output Performance of Contact‐Separation Mode Triboelectric Nanogenerators: Experiment and Modeling Studies

Author:

Cheng Teresa12ORCID,Hu Han1,Valizadeh Navid1,Qiong Liu12,Bittner Florian3,Yang Ling4,Rabczuk Timon5,Jiang Xiaoning6,Zhuang Xiaoying127ORCID

Affiliation:

1. Chair of Computational Science and Simulation Technology Faculty of Mathematics and Physics Leibniz University Hannover 30167 Hannover Germany

2. Laboratory of Nano and Quantum Engineering (LNQE) Leibniz University Hannover 30167 Hannover Germany

3. Institute of Plastics and Circular Economy (IKK) Leibniz University Hannover 30167 Garbsen Germany

4. Geriatric Department Shanghai Fourth People's Hospital Affiliated to Tongji University Shanghai 30167 China

5. Institute of Structural Mechanics Bauhaus University 99423 Weimar Germany

6. Department of Mechanical and Aerospace Engineering North Carolina State University Raleigh NC 27695 USA

7. College of Civil Engineering Department of Geotechnical Engineering Tongji University Shanghai 20092 China

Abstract

Triboelectric nanogenerators (TENGs) are promising self‐powering supplies for various intelligent sensing and monitoring devices, especially because they can harvest electric energy from low frequency and small‐scale mechanical motions. Despite the fact that contact‐separation mode TENGs with smaller contact areas harvest higher electrical outputs due to fringing effect, the impact of fringing effect on TENGs’ electrical outputs is rarely investigated quantitatively. Herein, in this study, the influence of fringing effect on the electrical outputs of contact‐separation mode TENGs by introducing discontinuity on the tribo‐negative side manually is investigated. In the results, it is revealed that the TENGs with more discontinuities show higher overall electric performance. Compared to pristine TENGs, the TENGs with discontinuity increased significantly, improving the surface charge by 50% and the power density by 114% when cross discontinuities are applied. However, one should generate discontinuities on tribo‐negative side of TENGs using ceramic blade instead of metal blade within a positive‐ion atmosphere due to the neutralization through the electrically conductive metal blade. The computational simulation validates that the TENGs with discontinuities obtain higher electrical outputs, and further investigates the effect of discontinuity gap size and array distance on TENGs performance. In this study, a promising method is provided for the future design of TENGs using discontinuous structures.

Funder

H2020 Marie Skłodowska-Curie Actions

Deutsche Forschungsgemeinschaft

European Research Council

Publisher

Wiley

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