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首页> 外文期刊>Advanced Functional Materials >Highly Stretchable and Wearable Thermotherapy Pad with Micropatterned Thermochromic Display Based on Ag Nanowire-Single-Walled Carbon Nanotube Composite
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Highly Stretchable and Wearable Thermotherapy Pad with Micropatterned Thermochromic Display Based on Ag Nanowire-Single-Walled Carbon Nanotube Composite

机译:基于银纳米线-单壁碳纳米管复合材料的微图案热致变色显示器的高伸缩可穿戴热疗垫

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摘要

Due to the increasing interest in wearable devices, flexible and stretchable film heaters have been widely studied, as alternatives to heaters with conventional rigid shapes. Herein, a highly stretchable film heater (SFH) based on the silver nanowire (Ag NW)-single-walled carbon nanotube composite with a thermochromic display on a polydimethylsiloxane (PDMS) substrate is successfully fabricated. The SFH shows excellent electrical conductivity, high mechanical stretchability, and outstanding reliability, with no significant degradation after 10 000 stretching cycles under tensile strain. The SFH can be heated to the target temperature (approximate to 60 degrees C) within 30 s at a low applied voltage. In addition, a thermochromic display is fabricated to help prevent the risk of low-temperature burns. Red (R), green (G), and blue (B) thermochromic microparticles (TMPs) are synthesized using drop-based microfluidic technology. The TMPs show RGB colors at room temperature but change to a white color above a certain temperature. The TMPs are arrayed into a PDMS stencil on the basis of their particle sizes using the rubbing technique. The micropatterned thermochromic display, which functions as a visual alarm, combined with the SFH can pave the way for the development of thermotherapy pads for next-generation wearable devices in the medical field.
机译:由于对可穿戴设备的兴趣不断增长,柔性和可拉伸薄膜加热器已被广泛研究,以替代具有传统刚性形状的加热器。在此,成功地制造了基于银纳米线(Ag NW)-单壁碳纳米管复合材料的高拉伸薄膜加热器(SFH),在聚二甲基硅氧烷(PDMS)基板上具有热致变色显示器。 SFH表现出出色的导电性,高机械拉伸性和出色的可靠性,在拉伸应变下经过1万次拉伸循环后,无明显降解。 SFH可以在30 s内以较低的施加电压加热到目标温度(大约60摄氏度)。另外,制造了热致变色显示器以帮助防止低温灼伤的风险。使用基于液滴的微流体技术合成红色(R),绿色(G)和蓝色(B)热致变色微粒(TMP)。 TMP在室温下显示RGB颜色,但在高于特定温度时变为白色。使用摩擦技术,根据其粒径将TMP排列到PDMS模具中。具有视觉报警功能的微图案热致变色显示器与SFH结合在一起,可以为医疗领域下一代可穿戴设备的热疗垫的开发铺平道路。

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