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用于层间电晕放电处理的层压结构,以实现基于离子的纳米发电机。

Laminating Structure for Interlayer Corona Discharge Treatment Toward Ion-Based Nanogenerators.

机构信息

The Institute for Basic Science, Inha University, Incheon, 22212, Republic of Korea.

Department of Physics, Inha University, Incheon, 22212, Republic of Korea.

出版信息

Small Methods. 2023 Jun;7(6):e2300097. doi: 10.1002/smtd.202300097. Epub 2023 Mar 24.

Abstract

A corona discharge treatment (CDT) is utilized to maximize the performance of triboelectric nanogenerators (TENGs) by injecting extra electrons into the negative tribomaterials. Increased performance of CDT TENGs, however, exhibits rapid degradation due to the electron dissipation by air moisture or thermal emission. To overcome such drawbacks and circumvent such dissipation, the source of charges should be replaced with ionic charges. This study reports a Ag nanowires (NWs)-embedded laminating structure (AeLS) with a unique fabrication procedure for ionic charge injection by CDT. The injection of ions is achieved by interlayer-CDT (i-CDT), in which positive charges are dissipated by Ag NWs, and the opposite negative ions can remain on the outmost surface. The AeLS TENGs with i-CDT exhibit high performance, long-term stability, and durability. It shows voltage, current, and maximum power outputs of 380 V, 15 µA, and 827 mW m , respectively. As a practical demonstration, rotational TENG integrated with a direct discharge system is realized, and its current and voltage reach 7.4 mA and 7800 V, respectively. This work can pave the way for the design of ion-based TENGs with high performance and long-lasting retention of triboelectric charges.

摘要

电晕放电处理(CDT)通过向负摩擦材料注入额外电子来最大限度地提高摩擦纳米发电机(TENG)的性能。然而,CDT TENG 的性能增加会因空气湿度或热发射导致电子耗散而迅速退化。为了克服这些缺点并避免这种耗散,电荷源应该用离子电荷取代。本研究报告了一种具有独特制造工艺的 Ag 纳米线(NWs)嵌入层压结构(AeLS),用于通过 CDT 注入离子电荷。通过层间 CDT(i-CDT)实现离子注入,其中 Ag NWs 耗散正电荷,而相反的负离子可以保留在最外层。具有 i-CDT 的 AeLS TENG 表现出高的性能、长期稳定性和耐用性。它分别显示出 380 V、15 µA 和 827 mW m 的电压、电流和最大功率输出。作为实际演示,实现了与直接放电系统集成的旋转 TENG,其电流和电压分别达到 7.4 mA 和 7800 V。这项工作为设计具有高性能和长时保持摩擦电荷的基于离子的 TENG 铺平了道路。

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