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Enhanced electrothermal efficiency of flexible graphene fabric Joule heaters with the aid of graphene oxide

机译:借助氧化石墨烯提高柔性石墨烯织物焦耳加热器的电热效率

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Flexible fabric Joule heaters reflect a broad prospect due to their wearable substrate, low cost and easily compatibility to garment. In this paper, graphene-based fabric Joule heaters were fabricated with spraying coating method, the as-prepared fabrics possessed bilayer structure corresponding to the inner graphene/polyurethane layer and the outer graphene oxide layer respectively. The morphology and electrothermal performance of the fabric Joule heaters were accomplished by scanning electron microscopy and infrared camera. The outer graphene oxide could dramatically promote the electrothermal efficiency of the fabric Joule heaters with the steady-state temperature (162.6 degrees C) and the maximum heating rate (8.4 degrees C/s) under 10 V applied voltage, which was much higher than the heaters without GO layer with the steady-state temperature 70.1 degrees C and the maximum heating rate 2.61 degrees C/s. Therefore, the existence of GO layer was first demonstrated to observably enhance the electrothermal efficiency of flexible fabric Joule heaters. (C) 2018 Elsevier B.V. All rights reserved.
机译:柔性织物焦耳加热器因其可穿戴基材,低成本和易于与服装兼容而具有广阔的前景。本文采用喷涂法制备了石墨烯基织物焦耳加热器,制备的织物具有双层结构,分别对应于内部石墨烯/聚氨酯层和外部石墨烯氧化物层。织物焦耳加热器的形貌和电热性能通过扫描电子显微镜和红外热像仪完成。在施加10 V电压时的稳态温度(162.6摄氏度)和最大加热速率(8.4摄氏度/秒)下,外层氧化石墨烯可以显着提高织物焦耳加热器的电热效率。没有GO层的加热器的稳态温度为70.1摄氏度,最大加热速率为2.61摄氏度/秒。因此,GO层的存在首先被证明可以显着提高柔性织物焦耳加热器的电热效率。 (C)2018 Elsevier B.V.保留所有权利。

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