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可修复且柔韧的透明加热器。

Healable and flexible transparent heaters.

机构信息

School of Materials Science and Engineering, Nanyang Technological University, Singapore 637553, Singapore.

出版信息

Nanoscale. 2017 Oct 12;9(39):14990-14997. doi: 10.1039/c7nr05748b.

Abstract

Challenges associated with the mechanical fracture of electrical conductors have hindered the realization of truly flexible high performance wearable electronics. Here, transparent healable electrodes have been developed and examined to alleviate these problems. The composite electrode features a layer of an interconnecting AgNW network on a polyurethane film modified with Diels-Alder adducts (PU-DA). Surface modification using hydrophilic molecules improved adhesion of the AgNW network and resulted in mechanically robust flexible electrodes with a figure of merit sheet resistance of 13.3 Ω □ and 77% transmittance at 550 nm. Transparent and flexible healable heaters (TFHH) with good mechanical and thermal stability were fabricated using these electrodes for potential applications in thermochromics, electrically driven displays and defrosters. The PU-DA TFHHs exhibited high Joule heating temperatures of 102 °C with a low operation voltage (6 V), fast thermal response (150 s) and enhanced robustness to endure large repeated mechanical strain for over 500 bending cycles with a small variance in resistance (<10%). After deliberate damage by a knife cut, the electrodes were healed and recovered to their original conductivity via a simple heat treatment at 120 °C. Uniquely, the healing process can also be triggered by utilising electrical power.

摘要

与电导体的机械断裂相关的挑战阻碍了真正灵活的高性能可穿戴电子产品的实现。在这里,开发并研究了透明可修复电极来缓解这些问题。该复合电极的特点是在具有 Diels-Alder 加合物(PU-DA)的聚氨酯薄膜上的一层互联 AgNW 网络。使用亲水分子进行表面改性提高了 AgNW 网络的附着力,从而得到了机械坚固的柔性电极,其优值(衡量电阻性能的参数)为 13.3 Ω□,在 550nm 处的透光率为 77%。使用这些电极制造了具有良好机械和热稳定性的透明且灵活的可修复加热器(TFHH),以用于热致变色、电致显示和除霜器等潜在应用。PU-DA TFHH 具有 102°C 的高焦耳加热温度,操作电压低(6V),热响应快(150s),并且在经过超过 500 次弯曲循环的大重复机械应变后,电阻的变化很小(<10%),从而具有增强的耐用性。在故意用刀切割损坏后,电极通过在 120°C 下进行简单的热处理即可修复并恢复到原始导电性。独特的是,还可以通过利用电力来触发修复过程。

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