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Highly sensitive, flexible and biocompatible temperature sensor utilizing ultra-long Au@AgNW-based polymeric nanocomposites

机译:高度敏感,柔韧和生物相容性温度传感器利用超Au@AgNW-based聚合物纳米复合材料

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摘要

Owing to their excellent sensitivity, stretchability, flexibility and conductivity, polymeric nanocomposites with conductive fillers have shown promise for a wide range of applications in bioelectronics and wearable devices. Herein, we report on the development of a flexible and biocompatible polymeric nanocomposite comprising ultra-long Ag–Au core–sheath nanowires (Au@AgNWs) dispersed in elastomeric media to fabricate a high-resolution wearable temperature sensor. Ultra-long AgNWs with an aspect ratio of about 1500 were synthesized using a Ca2+ ion-mediated facile one-pot polyol process. To enhance the biocompatibility and anti-oxidative property of the AgNWs, a 10–20 nm gold (Au) layer was conformably deposited without affecting the original nanowire morphology. The core–sheath structure of Au@AgNWs was characterized using HRTEM and EDS elemental mapping while the biocompatibility and anti-oxidative properties were tested using hydrogen peroxide (H2O2) etching in solution phase. Finally, the fabricated nanowires were used to prepare the Au@AgNW–poly-ethylene glycol (PEG)–polyurethane (PU)-based nanocomposite ink which can be printed on interdigitated electrodes to fabricate a thermoresistive temperature sensor with negative temperature coefficient (NTC) of resistance and quick response time (<100 s). The Au@AgNW–PEG–PU nanocomposite was characterized in detail and a novel temperature sensing mechanism based on controlling the internanowire distance of the PEG coated Au@AgNWs percolation by means of capillarity force among the nanowires as a result of the glass transition temperature of thermosensitive PEG was demonstrated. The proposed printable temperature sensor is flexible and biocompatible and shows promise for a range of wearable applications.
机译:由于其出色的灵敏度,拉伸性、灵活性和电导率,聚合物纳米复合材料的导电填料显示广泛的承诺吗应用在生物电子学和可穿戴设备。一个灵活的和生物相容性的聚合物纳米复合材料组成的超长Ag-Aucore-sheath纳米线(Au@AgNWs)分散弹性媒体制作高分辨率可穿戴式温度传感器。长宽比约为1500人合成使用Ca2 + ion-mediated肤浅锅多元醇的过程。生物相容性和氧化的性质AgNWs, 10 - 20纳米金(Au)层顺从地沉积没有影响原始纳米线形态。Au@AgNWs结构为特征虽然HRTEM及EDS元素映射生物相容性和氧化性能测试使用双氧水(过氧化氢)在解决方案阶段蚀刻。纳米线是用来准备制作的Au@AgNW-poly-ethylene乙二醇聚氨酯(挂钩)(PU)的纳米复合材料墨水,可以打印出来在互相交叉电极制造thermoresistive与负温度传感器电阻和温度系数(NTC)快速响应时间(< 100年代),Au@AgNW-PEG-PU纳米复合材料是在细节和特点基于小说温度传感机制控制internanowire挂钩的距离涂布Au@AgNWs渗流通过毛细现象力的纳米线的玻璃化转变温度热敏的挂钩了。提出了可打印温度传感器是灵活的和生物相容性,展示了一系列的承诺嵌入式应用程序。

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