4.8 Article

Self-Healable Reprocessable Triboelectric Nanogenerators Fabricated with Vitrimeric Poly(hindered Urea) Networks

期刊

ACS NANO
卷 14, 期 9, 页码 11442-11451

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsnano.0c03819

关键词

dynamic bulky urea chemistry; poly(hindered urea); self-healing; reprocessability; interfacial polarization; triboelectric device

资金

  1. Natural Science and Engineering Research Council (NSERC) in Canada [RGPIN/4989-2016]
  2. Natural Science and Engineering Research Council (NSERC) in Canada through Canada Research Chair (CRC) [950-231058]
  3. National Research Foundation (NRF) of Korea [2019R1I1A1A01060653]
  4. Ministry of Trade, Industry, and Energy [10067082]
  5. Office of the VP Research at Concordia University through Team Accelerate Grant
  6. Office of the VP Research at Concordia University through Horizon Postdoctoral Fellowship
  7. Korea Evaluation Institute of Industrial Technology (KEIT) [10067082] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)
  8. National Research Foundation of Korea [2019R1I1A1A01060653] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

In recent years, the advent of highly deformable and healable electronics is exciting and promising for next-generation electronic devices. In particular, self-healable triboelectric nanogenerators (SH-TENGs) serve as promising candidates based on the combination of the triboelectric effect, electrostatic induction, and self-healing action. However, the majority of SH-TENGs have been devised with weak polymeric networks that are healed with reversible supramolecular interactions or disulfides, thus resulting in poor mechanical properties and low resistance to creeping. To address this issue, we demonstrate the integration of mechanically strong and self-healable poly(hindered urea) (PHU) network in the fabrication of effective TENGs. The designed PHU network is flexible but shows greater mechanical property of tensile strength as high as 1.7 MPa at break. The network is capable of self-healing quickly and repeatedly as well as being reprocessable under mild conditions, enabling the recovery of triboelectric performances after the complete healing of the damaged surfaces. Furthermore, the interfacial-polarization-induced enhancement of dielectric constant endows our SH-TENG with the highest triboelectric output performance (169.9 V/cm(2)) among the reported healable TENGs. This work presents an avenue to the development of mechanical energy-harvesting devices and self-powered sensors with excellent stretchability, high recoverability, and good mechanical strength.

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