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具有润湿性和导电性双重非对称集成的混合 Janus 膜,用于超低体积汗液感应。

Hybrid Janus Membrane with Dual-Asymmetry Integration of Wettability and Conductivity for Ultra-Low-Volume Sweat Sensing.

机构信息

Key Laboratory of Macromolecular Synthesis and Functionalization, MOE Engineering Research Center of Membrane and Water Treatment Technology, Department of Polymer Science and Engineering, Zhejiang University, Hangzhou 310027, China.

School of Pharmacy, Hangzhou Normal University, Hangzhou 311121, China.

出版信息

ACS Appl Mater Interfaces. 2022 Feb 23;14(7):9644-9654. doi: 10.1021/acsami.1c16820. Epub 2022 Feb 8.

Abstract

Highly sensitive and selective analysis of sweat at ultra-low sample volume remains a major challenge in the field of biosensing. Manipulation of small volumes of liquid for efficient sampling is essential to address this challenge. A hybrid Janus membrane with dual-asymmetry integration of wettability and conductivity is developed for regulated micro-volume liquid transport in wearable sweat biosensing. Unlike the uncontrollable liquid diffusion in a conventional porous membrane, the asymmetric wettability of porous Janus membrane leads to unique unidirectional liquid transport with high breakthrough pressure (1737.66 Pa) and fast self-pumping rate (35.94 μL/min) for micro-volume liquid sampling. The asymmetric conductive layer shows excellent flexible conductivity, anti-interference of friction, and efficient electrochemical interface due to the in situ generation of gold nanoparticles on one side of the membrane. The fabricated Pt-enzyme electrodes on the membrane promises effective testing range, great selectivity, and high sensitivity and accuracy (correlation efficiency, glucose: = 0.999, lactate: = 0.997), enabling ultra-low volume (∼0.15 μL) real time measurements on the skin surface. The innovative Janus membrane with unidirectional, self-pumping, and anti-interference performance provides a new strategy for miniaturized wearable microfluidic sweat electrochemical biosensor preparation in athletic performance evaluation, health monitoring, disease diagnosis, intelligent medicine, and so forth.

摘要

在生物传感领域,对超低样品量的汗液进行高灵敏度和选择性分析仍然是一个主要挑战。为了应对这一挑战,需要对小体积的液体进行高效采样。本研究开发了一种具有润湿性和导电性双重非对称集成的混合 Janus 膜,用于可穿戴汗液生物传感中的受控微体积液体传输。与传统多孔膜中不可控的液体扩散不同,多孔 Janus 膜的不对称润湿性导致独特的单向液体传输,具有高突破压力(1737.66 Pa)和快速自吸率(35.94 μL/min),可用于微体积液体采样。不对称导电层由于膜一侧原位生成金纳米粒子,表现出优异的柔性导电性、抗摩擦干扰和高效的电化学界面。膜上制备的 Pt 酶电极具有有效的检测范围、出色的选择性以及高灵敏度和准确性(相关系数,葡萄糖: = 0.999,乳酸: = 0.997),可实现超低体积(约 0.15 μL)的实时皮肤表面测量。具有单向、自吸和抗干扰性能的创新 Janus 膜为微型化可穿戴微流汗液电化学生物传感器的制备提供了一种新策略,可用于运动表现评估、健康监测、疾病诊断、智能医学等领域。

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