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Rapid production of large-area, transparent and stretchable electrodes using metal nanofibers as wirelessly operated wearable heaters

机译:使用金属纳米纤维作为无线可穿戴加热器,快速生产大面积,透明且可拉伸的电极

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摘要

A rapidly growing interest in wearable electronics has led to the development of stretchable and transparent heating films that can replace the conventional brittle and opaque heaters. Herein, we describe the rapid production of large-area, stretchable and transparent electrodes using electrospun ultra-long metal nanofibers (mNFs) and demonstrate their potential use as wirelessly operated wearable heaters. These mNF networks provide excellent optoelectronic properties (sheet resistance of similar to 1.3 O per sq with an optical transmittance of similar to 90%) and mechanical reliability (90% stretchability). The optoelectronic properties can be controlled by adjusting the area fraction of the mNF networks, which also enables the modulation of the power consumption of the heater. For example, the low sheet resistance of the heater presents an outstanding power efficiency of 0.65 W cm(-2) (with the temperature reaching 250 degrees C at a low DC voltage of 4.5 V), which is similar to 10 times better than the properties of conventional indium tin oxide-based heaters. Furthermore, we demonstrate the wireless fine control of the temperature of the heating film using Bluetooth smart devices, which suggests substantial promise for the application of this heating film in next-generation wearable electronics.
机译:人们对可穿戴电子产品的兴趣迅速增长,导致可拉伸和透明加热膜的开发成为可能,该加热膜可以代替传统的脆性和不透明加热器。在这里,我们描述了使用电纺超长金属纳米纤维(mNFs)快速生产大面积,可拉伸和透明的电极,并展示了它们作为无线可穿戴加热器的潜在用途。这些mNF网络具有出色的光电性能(每平方的薄层电阻约1.3 O,光透射率约90%)和机械可靠性(可拉伸性90%)。可以通过调节mNF网络的面积比例来控制光电性能,这也可以调节加热器的功耗。例如,加热器的低薄层电阻具有0.65 W cm(-2)的出色功率效率(在4.5 V的低DC电压下温度达到250摄氏度时),其功率效率大约是其10倍。传统的基于铟锡氧化物的加热器的性能。此外,我们演示了使用蓝牙智能设备对加热膜温度进行无线精细控制的方法,这表明该加热膜在下一代可穿戴电子产品中的应用前景广阔。

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