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Fully Stretchable Capillary Microfluidics-Integrated Nanoporous Gold Electrochemical Sensor for Wearable Continuous Glucose Monitoring

机译:可穿戴连续葡萄糖监测的可伸缩毛细管微流体集成的纳米多孔金电化学传感器

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摘要

Biosensor systems for wearable continuous monitoring are desired to be developed into conformal patch platforms. However, developing such patches is very challenging owing to the difficulty of imparting materials and components with both high stretchability and high performance. Herein, we report a fully stretchable microfluidics-integrated glucose sensor patch comprised of an omnidirectionally stretchable nanoporous gold (NPG) electrochemical biosensor and a stretchable passive microfluidic device. A highly electrocatalytic NPG electrode was formed on a stress-absorbing 3D micropatterned polydimethylsiloxane (PDMS) substrate to confer mechanical stretchability, high sensitivity, and durability in non-enzymatic glucose detection. A thin, stretchable, and tough microfluidic device was made by embedding stretchable cotton fabric as a capillary into a thin polyurethane nanofiber-reinforced PDMS channel, enabling collection and passive, accurate delivery of sweat from skin to the electrode surface, with excellent replacement capability. The integrated glucose sensor patch demonstrated excellent ability to continuously and accurately monitor the sweat glucose level.
机译:希望可穿戴连续监测的生物传感器系统被开发成共形贴片平台。然而,由于难以赋予高可拉伸性和高性能的难以赋予材料和部件,开发这种贴剂非常具有挑战性。在此,我们报告了一种完全可拉伸的微流体 - 整合葡萄糖传感器贴片,其包括全向可拉伸的纳米多孔金(NPG)电化学生物传感器和可拉伸的被动微流体装置。在应力吸收的3D微透明理由的聚二甲基硅氧烷(PDMS)底物上形成高电催化NPG电极,以赋予非酶促葡萄糖检测中的机械拉伸性,高灵敏度和耐久性。通过将可伸缩的棉织物作为毛细管嵌入薄型聚氨酯纳米纤维增强的PDMS通道,使收集和被动,精确地将汗水从皮肤带入电极表面,具有出色的更换能力来制备薄的,可拉伸和坚韧的微流体装置。集成的葡萄糖传感器贴片表现出优异的能力,可连续,准确地监测汗液葡萄糖水平。

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