4.7 Article

Enhanced performance of triboelectric nanogenerator based on polyamide-silver antimony sulfide nanofibers for energy harvesting

Journal

RENEWABLE ENERGY
Volume 179, Issue -, Pages 1781-1792

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.renene.2021.07.118

Keywords

Self-powered devices; Spring assisted TENGs; Nanofiber dielectrics; Polyamide-silver antimony sulfide

Funding

  1. Scientific and Technological Research Council of Turkey (TUBITAK) [217M212, 121M608]

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This study demonstrates that decorating Nylon 6.6 nanofibers with AgSbS2 enhances the output voltage and power density of TENGs, showing significant improvement in triboelectric performance.
Triboelectric nanogenerators (TENGs) are new renewable energy harvesting devices that convert smallscale mechanical movements into electrical energy. Nowadays, the dielectric materials with high tribopotential are being investigated significantly to improve the energy conversion efficiency of TENGs. Nanofibers are widely used as dielectric materials in TENGs due to their high surface area and flexibility. In this study, polyacrylonitrile nanofibers and AgSbS2 doped Nylon 6.6 nanofibers were tested as dielectric layers in spring assisted TENGs. Decorating Nylon 6.6 with AgSbS2 both enhanced the output voltage and markedly advanced the power density of the TENGs, and thus improved triboelectric performance of the TENGs. According to the results, tribopotential of Nylon 6.6 was enhanced as AgSbS2 additive amount increased. Compared to PAN/Nylon 6.6 nanofibers based TENG, PAN/10 wt% AgSbS2@Nylon 6.6 nanofibers based TENG exhibited 2.95 and 1.68 fold enhancement in power density and output voltage, respectively. The peak power density of PAN/10 wt% AgSbS2@Nylon 6.6 nanofibers based TENG reached 6.81 W/m(2) under a load resistance of 10 MU. From the perspective of the choices of materials and design, the results demonstrate that grafting AgSbS2 nanocrystal materials into Nylon 6.6 nanofibers is an effective way to make better the triboelectric performance of nanofibers mat based TENG. Therefore, the study not only shows a high triboelectric performance of nanofibers based TENG, but also shed on light new glance into the material selection, fabrication, and design for contact separation mode TENGs. (C) 2021 Elsevier Ltd. All rights reserved.

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