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Waterborne polyurethane based thermoelectric composites and their application potential in wearable thermoelectric textiles

机译:水性聚氨酯基热电复合材料及其在可穿戴热电纺织品中的应用潜力

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摘要

A fabric based thermoelectric generator with great wearability would overcome the wearable difficulty of existing organic film generators, which shows promising application in flexible and wearable self powered electronic systems by harvesting body heat to generate electricity. However, to fabricate a wearable fabric thermoelectric generator, yarns with thermoelectric function are indispensable components, since yarns are the basic composition units of fabric structures, which can be treated as thermoelectric legs in a fabric thermoelectric generator. Thus, to give thermoelectric function to yarns, a new water-processable thermoelectric coating material made of waterborne polyurethane, MWCNT and PEDOT:PSS composite was developed. The thermoelectric properties of the composite with different constituents were investigated. The optimal electrical conductivity and Seebeck coefficient could achieve similar to 13826 S/m and similar to 10 mu V/K at room temperature respectively, resulting in a power factor of similar to 1.41 mu W m(-1) K-2. In the following coating experiment, the fabricated composite was successfully coated on commercial cotton and polyester yarns respectively. Compared with the staple cotton yarn, the long continuous polyester filament exhibiting better coating layer is more suitable as coating substrate. The fabricated yarns will be the foundation for our next study of fabric TEG. (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有良好耐磨性的基于织物的热电发生器将克服现有有机薄膜发生器的耐磨性,通过收集人体热量来发电,这在柔性和可穿戴式自供电电子系统中显示出有希望的应用。然而,为了制造可穿戴的织物热电发生器,具有热电功能的纱线是必不可少的组件,因为纱线是织物结构的基本组成单元,可以在织物热电发生器中将其视为热电腿。因此,为了赋予纱线热电功能,开发了一种新型的水可加工的热电涂料,该涂料由水性聚氨酯,MWCNT和PEDOT:PSS复合材料制成。研究了具有不同成分的复合材料的热电性能。最佳电导率和塞贝克系数分别在室温下可达到类似于13826 S / m和类似于10μV/ K,从而导致功率因数类似于1.41μW m(-1)K-2。在随后的涂层实验中,将制成的复合材料分别成功地涂覆在商品棉和聚酯纱线上。与短纤维棉纱相比,具有更好涂层的长连续聚酯长丝更适合作为涂层基材。制成的纱线将成为我们下一步研究织物TEG的基础。 (C)2016 Elsevier Ltd.保留所有权利。

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