首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Intrinsically recyclable and self-healable conductive supramolecular polymers for customizable electronic sensors
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Intrinsically recyclable and self-healable conductive supramolecular polymers for customizable electronic sensors

机译:用于可定制的电子传感器的本质上可回收和自我恢复的导电超分子聚合物

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摘要

Electronic waste is increasing rapidly and ruining ecosphere owing to the growing amount of unrecyclable and even toxic electronic materials. Sensing components and electronic boards, mainly composed of unrecyclable metal oxides and thermoset polymers, are two major sources of electronic waste. Hence, developing novel electronic materials that can be fully recycled and reused is one of the most investigated concerns for recyclable electronics. In this study, efforts are devoted to inventing an intrinsically recyclable conductive supramolecular polymer, which is composed of a sensing segment of ionic liquid crosslinked by dynamic quadruple hydrogen bonds. This supramolecular polymer exhibits remarkable thermal sensing ability, reprocessability, and recyclability. Based on these advantages, it can be easily molded into an electronic thermometer with controllable size and shape, which can be fully recycled; also, it retains the same thermal sensing performance. Particularly, this supramolecular polymer can be processed into thermal sensing earplugs with customized 3D shapes for ear-temperature measurement as a reliable monitoring approach of body temperature. Thus, it offers great potential for practical applications in special conditions.
机译:由于越来越多的无可救药甚至有毒的电子材料,电子废物正在增加迅速和毁灭的eV。传感元件和电子板,主要由不可粘附的金属氧化物和热固性聚合物组成,是电子垃圾的两个主要来源。因此,开发能够完全回收和重用的新型电子材料是可回收电子产品最受研究的问题之一。在本研究中,致力于发明内在可再循环的导电超分子聚合物,其由通过动态四氢键交联的离子液体的传感区段组成。这种超分子聚合物表现出显着的热敏能力,再加工性和可回收性。基于这些优点,可以轻松地模塑成具有可控尺寸和形状的电子温度计,可以完全再循环;此外,它保留了相同的热敏感测性能。特别地,这种超分子聚合物可以用定制的3D形状加工成热敏传感耳塞,用于耳温测量作为体温可靠的监测方法。因此,它在特殊条件下提供了实际应用的巨大潜力。

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