Chen Xingbao, Zhao Shiwei, Yuan Anqian, Chen Silong, Liao Yansheng, Lei Yuan, Fu Xiaowei, Lei Jingxin, Jiang Liang
State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute of Sichuan University, Chengdu, 610065, China.
Adv Sci (Weinh). 2024 Dec;11(45):e2405941. doi: 10.1002/advs.202405941. Epub 2024 Oct 14.
The rapid advancement of smart, flexible electronic devices has paralleled a surge in electronic waste (e-waste), exacerbating massive resource depletion and serious environmental pollution. Recyclable materials are extensively investigated to address these challenges. Herein, this study designs a unique polyurethane (SPPUs) with ultra-high strength up to 60 MPa and toughness of 360 MJ m. This synthetic SPPUs can be fully recycled at room temperature by using green solvents of ethanol. Accordingly, the resultant SPPU-Ni composites, created by mixing the ethanol-dissolved SPPUs solution with nickel (Ni) powder, effectively combine the flexibility and recyclability of SPPUs with the electrical conductivity of the nickel filler. Notably, this work develops the printable capacitive sensors (PCBS) through transcribing the paste of SPPUs-Ni slurry onto PET film and paper using screen-printing technology. The devised PCBS have fast response time ≈50 ms, high resolution, and multiple signal recognition capabilities. Remarkably, SPPUs and Ni powder can be fully recycled by only dissolving the waste PCBS in ethanol. This work offers a sustainable solution to the growing e-waste problem in recyclable flexible electronics.
智能、柔性电子设备的迅速发展伴随着电子垃圾(电子废弃物)的激增,加剧了大量资源的消耗和严重的环境污染。人们对可回收材料进行了广泛研究以应对这些挑战。在此,本研究设计了一种独特的聚氨酯(SPPUs),其具有高达60兆帕的超高强度和360兆焦/立方米的韧性。这种合成的SPPUs可以在室温下使用乙醇绿色溶剂进行完全回收。因此,通过将乙醇溶解的SPPUs溶液与镍(Ni)粉混合制得的所得SPPU-Ni复合材料,有效地将SPPUs的柔韧性和可回收性与镍填料的导电性结合起来。值得注意的是,这项工作通过使用丝网印刷技术将SPPUs-Ni浆料的糊剂转印到PET膜和纸张上,开发出了可印刷电容式传感器(PCBS)。所设计的PCBS具有约50毫秒的快速响应时间、高分辨率和多种信号识别能力。值得注意的是,只需将废弃的PCBS溶解在乙醇中,SPPUs和镍粉就可以完全回收。这项工作为可回收柔性电子产品中日益严重的电子废弃物问题提供了一种可持续的解决方案。