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Integration of Transparent Supercapacitors and Electrodes Using Nanostructured Metallic Glass Films for Wirelessly Rechargeable, Skin Heat Patches

机译:使用纳米结构金属玻璃膜的透明超级电容器和电极的整合,用于无线充电,皮肤热贴片

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摘要

Here we demonstrate an unconventional fabrication of highly transparent supercapacitors and electrodes using random networks of nanostructured metallic glass nanotroughs for their integrations as wirelessly rechargeable and invisible, skin heat patches. Transparent supercapacitors with fine conductive patterns were printed using an electrohydrodynamic jet-printing. Also, transparent and stretchable electrodes, for wireless antennas, heaters and interconnects, were formed using random network based on nanostructured CuZr nanotroughs and Ag nanowires with superb optoelectronic properties (sheet resistance of 3.0 Omega/sq at transmittance of 91.1%). Their full integrations, as an invisible heat patch on skin, enabled the wireless recharge of supercapacitors and the functions of heaters for thermal therapy of skin tissue. The demonstration of this transparent thermotherapy patch to control the blood perfusion level and hydration rate of skin suggests a promising strategy toward next-generation wearable electronics.
机译:在这里,我们证明了使用纳米结构金属玻璃纳米大小的随机网络的高度透明超级电容器和电极的非常规制作,其作为无线可充电和隐形性皮肤热贴片的整合。使用电流动力学喷射印刷印刷具有细导导体的透明超级电容器。此外,使用基于纳米结构的CuzR纳米纳米纳米纳米大学和Ag纳米线的随机网络形成透明和可拉伸的电极,用于无线天线,加热器和互连,具有超级光电性能(透射率为91.1%的透射率为3.0ω/ sq的片性)。作为皮肤上的无形的热贴片,它们的完全集成使超级电容器的无线充电和加热器的功能进行皮肤组织的热疗。这种透明热疗贴片的证明为了控制血液灌注水平和水合率的皮肤率表明了对下一代可穿戴电子产品的有希望的策略。

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