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首页> 外文期刊>ACS applied materials & interfaces >Smart Nanocomposite Nonwoven Wearable Fabrics Embedding Phase Change Materials for Highly Efficient Energy Conversion–Storage and Use as a Stretchable Conductor
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Smart Nanocomposite Nonwoven Wearable Fabrics Embedding Phase Change Materials for Highly Efficient Energy Conversion–Storage and Use as a Stretchable Conductor

机译:智能纳米复合无纺布可穿戴织物嵌入相变材料,用于高效的能量转换储存,用作可拉伸导体

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摘要

Flexible and intelligent electronics are highly demanded in wearable devices and systems, but it is still challenging to fabricate conductive textiles with good stretchability, multifunctionality, and responsiveness to multistimuli. Therefore, kinds of smart conductive fabrics with high stretchability and thermal properties, good washability, excellent shape stability, rapid responsiveness to external stimuli (e.g., electrical and photonic), and outstanding energy conversion and storage properties were designed and prepared. The nonwoven smart fabrics were fabricated by electrospinning of a solution of multiwalled carbon nanotubes (MWCNTs)/lauric acid (LA)/thermoplastic polyurethane (PU) and dip-coating conductive polymer poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) on the obtained nanofibers. The smart textiles showed tunable temperature and phase change enthalpy that responded to external stimuli such as electrical voltage, infrared light, and sunlight. At the same time, they realized the storage and conversion of energy reversibly with a high efficiency. The elastic fabrics could also be used as a stretchable conductor in a range of deformation. The integrative functions of the smart fabrics promise them great potential in wearable systems and intelligent protective garments.
机译:可穿戴设备和系统对柔性和智能电子产品的要求很高,但制造具有良好拉伸性、多功能性和多刺激响应性的导电纺织品仍然具有挑战性。因此,设计并制备了各种具有高拉伸性和热性能、良好耐洗性、良好形状稳定性、对外部刺激(例如电刺激和光子刺激)快速响应以及优异能量转换和存储性能的智能导电织物。通过将多壁碳纳米管(MWCNTs)/月桂酸(LA)/热塑性聚氨酯(PU)溶液静电纺丝,并在获得的纳米纤维上浸涂导电聚合物聚(3,4-亚乙基二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS),制备了非织造智能织物。智能纺织品显示出可调的温度和相变焓,对电压、红外光和阳光等外部刺激做出响应。同时,他们实现了能量的高效可逆存储和转换。弹性织物也可以在一定变形范围内用作可拉伸导体。智能面料的综合功能使其在可穿戴系统和智能防护服中具有巨大潜力。

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