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Woven electrochemical fabric-based test sensors (WEFTS): a new class of multiplexed electrochemical sensors

机译:机织电化学织物基测试传感器(WEFTS):一类新型的多路电化学传感器

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We present textile weaving as a new technique for the manufacture of miniature electrochemical sensors with significant advantages over current fabrication techniques. Biocompatible silk yarn is used as the material for fabrication instead of plastics and ceramics used in commercial sensors. Silk yarns are coated with conducting inks and reagents before being handloom-woven as electrodes into patches of fabric to create arrays of sensors, which are then laminated, cut and packaged into individual sensors. Unlike the conventionally used screen-printing, which results in wastage of reagents, yarn coating uses only as much reagent and ink as required. Hydrophilic and hydrophobic yarns are used for patterning so that sample flow is restricted to a small area of the sensor. This simple fluidic control is achieved with readily available materials. We have fabricated and validated individual sensors for glucose and hemoglobin and a multiplexed sensor, which can detect both analytes. Chronoamperometry and differential pulse voltammetry (DPV) were used to detect glucose and hemoglobin, respectively. Industrial quantities of these sensors can be fabricated at distributed locations in the developing world using existing skills and manufacturing facilities. We believe such sensors could find applications in the emerging area of wearable sensors for chemical testing.
机译:我们提出纺织作为一种新的技术,用于制造微型电化学传感器,它比当前的制造技术具有明显优势。生物相容性丝线被用作制造材料,代替了商用传感器中使用的塑料和陶瓷。丝绸纱线先用导电油墨和试剂涂覆,然后再用手工编织机将其作为电极织入织物小片中,形成传感器阵列,然后将其层压,切割并包装成单个传感器。与导致试剂浪费的常规丝网印刷不同,纱线涂层仅使用所需数量的试剂和墨水。亲水性和疏水性纱线用于图案化,因此样品流被限制在传感器的一小部分。这种简单的流体控制可以通过现成的材料实现。我们制造并验证了用于葡萄糖和血红蛋白的单独传感器以及可以检测两种分析物的多路复用传感器。计时电流法和差分脉冲伏安法(DPV)分别用于检测葡萄糖和血红蛋白。可以使用现有技术和制造设施在发展中国家的分布地点制造这些传感器的工业量。我们相信,此类传感器可以在可穿戴传感器的新兴领域中找到用于化学测试的应用。

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