High Performance Triboelectric Nanogenerator Based on Ultrastretchable Composite Electrode

  • Kim, Jinah; 
  • Park, Hyosik; 
  • Kim, Giyong; 
  • Lee, Ju-Hyuck; 
  • Park, Jinhyoung; 
  • ... Kim, Sung Yeol
Citations

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초록

Recently, stretchable triboelectric nanogenerators have attracted considerable attention as sustainable energy sources for emerging sensors and electronic applications. In this study, we fabricated a high-performance triboelectric nanogenerators (TENG) (SRC-TENG) with excellent stretchability based on a composite electrode composed of a silicone rubber and carbon nanotube (CNT). Our SRC-TENG is capable of 800% elongation and is structurally simple, robust, and easy to fabricate. Moreover, it exhibits excellent performance and delivers a maximum output of 3.52 W/m(2) at 100 M Omega, which is comparable to or even higher than those of most ultrastretchable TENGs reported. Furthermore, the output performance of the SRC-TENG is enhanced by optimizing the thickness of the composite in the range of 500-3000 mu m. This increase was due to the increase in the interfacial area between the dielectric material and CNTs and the enlargement of the contact area. The fabricated SRC-TENGs show relatively high output performance even in their stretched state (e.g. less than similar to 30% decrease at 200% elongation) and demonstrate excellent long-term stability under a continuous loading of 50,000 cycles. We believe that our design principle for developing a high-performance TENG based on a composite electrode can be further expanded to other combinations of tribomaterials for various applications.

키워드

Carbon nanotubes; Nanocomposite; Stretchability; Silicon rubber; Thickness; ENERGY; TRANSPARENT
제목
High Performance Triboelectric Nanogenerator Based on Ultrastretchable Composite Electrode
저자
Kim, Jinah; Park, Hyosik; Kim, Giyong; Lee, Ju-Hyuck; Park, Jinhyoung; Kim, Sung Yeol
DOI
10.1007/s40684-023-00517-4
발행일
2023-11
유형
Article
저널명
International Journal of Precision Engineering and Manufacturing-Green Technology
권
10
호
6
페이지
1543 ~ 1552