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首页> 外文期刊>ACS nano >Self-Healable Reprocessable Triboelectric Nanogenerators Fabricated with Vitrimeric Poly(hindered Urea) Networks
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Self-Healable Reprocessable Triboelectric Nanogenerators Fabricated with Vitrimeric Poly(hindered Urea) Networks

机译:用戊二烷聚(受阻尿素)网络制造的自我恢复再加工的摩擦纳米液体

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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.
机译:近年来,对下一代电子设备来说,高度可变形和可康复的电子设备的出现是令人兴奋和有希望的。特别是,自我愈合的摩擦纳米能器(Sh-tengs)是基于摩擦电效应,静电诱导和自我愈合作用的结合的承诺候选者。然而,大多数Sh-tengs已经设计成弱聚合物网络,其具有可逆的超分子相互作用或二硫化物愈合,因此机械性能差和低抗蠕变性。为了解决这个问题,我们展示了在有效龄的制造中整合了机械强大和自我愈合的聚(阻碍尿素)(PHU)网络。设计的PHU网络是灵活的,但突出的拉伸强度高达1.7MPa的力量较大。该网络能够快速且重复地自愈,并在温和条件下进行再加工,使得在损坏的表面的完全愈合之后能够回收摩擦电性能。此外,介电常数的界面极化诱导的增强赋予我们的SH-TENG以最高的摩擦力输出性能(169.9V / cm〜(2))在据报道的可康复的腾腾中。这项工作提出了一种发展机械能量收集装置和自动传感器的途径,具有优异的可拉伸性,高可回收性和良好的机械强度。

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