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One-Step Fabrication of Stretchable Copper Nanowire Conductors by a Fast Photonic Sintering Technique and Its Application in Wearable Devices

机译:快速光子烧结技术一步法制备可拉伸铜纳米线导体及其在可穿戴设备中的应用

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Copper nanowire (CuNW) conductors have been considered to have a promising perspective in the area of stretchable electronics due to the low price and high conductivity. However, the fabrication of CuNW conductors suffers from harsh conditions, such as high temperature, reducing atmosphere, and time-consuming transfer step. Here, a simple and rapid one-step photonic sintering technique was developed to fabricate stretchable CuNW conductors on polyurethane (PU) at room temperature in air environment. It was observed that CuNWs were instantaneously deoxidized, welded and simultaneously embedded into the soft surface of PU through the one-step photonic sintering technique, after which highly conductive network and strong adhesion between CuNWs and PU substrates were achieved. The CuNW/PU conductor with sheet resistance of 22.1 Ohm/sq and transmittance of 78% was achieved by the one-step photonic sintering technique within only 20,us in air. Besides, the CuNW/PU conductor could remain a low sheet resistance even after 1000 cycles of stretching/releasing under 10% strain. Two flexible electronic devices, wearable sensor and glove-shaped heater, were fabricated using the stretchable CuNW/PU conductor, demonstrating that our CuNW/PU conductor could be integrated into various wearable electronic devices for applications in food, clothes, and medical supplies fields.
机译:铜纳米线(CuNW)导体由于价格低廉,导电率高而被认为在可拉伸电子学领域具有广阔的前景。然而,CuNW导体的制造遭受苛刻的条件,例如高温,还原气氛和费时的转移步骤。在这里,开发了一种简单,快速的一步光子烧结技术,以在室温下在空气环境中在聚氨酯(PU)上制备可拉伸的CuNW导体。观察到,通过一步光子烧结技术,CuNWs瞬间脱氧,焊接并同时嵌入到PU的软表面中,此后,CuNWs和PU基板之间实现了高导电性网络和强附着力。通过单步光子烧结技术,在空气中仅20us内即可获得薄层电阻为22.1 Ohm / sq,透射率为78%的CuNW / PU导体。此外,CuNW / PU导体即使在10%应变下经过1000次拉伸/释放循环后仍可以保持较低的薄层电阻。使用可拉伸的CuNW / PU导体制造了两个柔性电子设备,即可穿戴传感器和手套形加热器,这表明我们的CuNW / PU导体可以集成到食品,衣服和医疗用品领域的各种可穿戴电子设备中。

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