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Fast Temporal Response Fiber-Optic Chemical Sensors Based on the Photodeposition of Micrometer-Scale Polymer Arrays

机译:基于微米级聚合物阵列光沉积的快速时间响应光纤化学传感器

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摘要

Fiber-optic chemical sensor microarrays for the detection of pH and O↓(2) have been developed with subsecond response times. Sensor microarrays are fabricated by the covalent immobilization (pH sensor arrays) or the physical entrapment (O↓(2) sensor arrays) of fluorescent indicators in photodeposited polymer matrices on optical imaging fibers. Polymer microarrays are comprised of thousands of individual elements photodeposited as hemispheres such that each element of the sensor array is coupled directly to a discrete optical element of the imaging fiber and is not in contact with other neighboring elements. Because of the hemispherical shape and the individuality of the array elements, diffusion of analyte to the sensor elements is dominated by radial diffusion, resulting in a rapid response time. pH-sensitive arrays based on fluorescein respond to a 1.5-unit pH change within 300 ms, while the O↓(2)-sensitive arrays respond to O↓(2) changes within 200 ms (90% of steady state response).
机译:已开发出具有亚秒级响应时间的用于检测pH和O↓(2)的光纤化学传感器微阵列。传感器微阵列是通过荧光指示剂在光学成像纤维上的光沉积聚合物基质中的共价固定化(pH传感器阵列)或物理捕获(O↓(2)传感器阵列)制成的。聚合物微阵列由成千上万个以半球形式光沉积的单个元件组成,因此传感器阵列的每个元件都直接耦合到成像光纤的分立光学元件,并且不与其他相邻元件接触。由于半球形的形状和阵列元件的独特性,分析物向传感器元件的扩散主要由径向扩散决定,从而导致了快速的响应时间。基于荧光素的pH敏感阵列在300毫秒内响应1.5个单位的pH值变化,而O↓(2)敏感阵列在200毫秒内响应O↓(2)的变化(稳态响应的90%)。

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