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首页> 外文期刊>Analytical chemistry >Development of an Ordered Array of Optoelectrochemical Individually Readable Sensors with Submicrometer Dimensions: Application to Remote Electrochemiluminescence Imaging
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Development of an Ordered Array of Optoelectrochemical Individually Readable Sensors with Submicrometer Dimensions: Application to Remote Electrochemiluminescence Imaging

机译:具有亚微米尺寸的光电化学个体可读传感器的有序阵列的开发:在远程电化学发光成像中的应用

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摘要

A novel array of optoelectrochemical submicrometer sensors for remote electrochemiluminescence (ECL) imaging is presented. This device was fabricated by chemical etching of a coherent optical fiber bundle to produce a nanotip array. The surface of the etched bundle was sputter-coated with a thin layer of indium tin oxide in order to create a transparent and electrically conductive surface that is insulated eventually by a new electrophoretic paint except for the apex of the tip. These fabrication steps produced an ordered array of optoelectrochemical sensors with submicrometer dimensions that retains the optical fiber bundle architecture. The electrochemical behavior of the sensor array was independently characterized by cyclic voltammetry and ECL experiments. The steady-state current indicates that the sensors are diffusively independent. This sensor array was further studied with a co-reactant ECL model system, such as Ru-(bpy)_(3)~(2+)/TPrA. We clearly observed an ordered array of individual ECL micrometer spots, which corresponds to the sensor array structure. While the sensors of the array are not individually addressable electrochemically, we could establish that the sensors are optically independent and individually readable. Finally, we show that remote ECL imaging is performed quantitatively through the optoelectrochemical sensor array itself.
机译:提出了一种新型的用于远程电化学发光(ECL)成像的光电化学亚微米传感器阵列。通过化学蚀刻相干光纤束以产生纳米尖端阵列来制造该装置。蚀刻的束的表面用铟锡氧化物的薄层进行溅射镀膜,以形成透明且导电的表面,最终,除了尖端的尖端外,新的电泳涂料将其绝缘。这些制造步骤产生了具有亚微米尺寸的光电化学传感器的有序阵列,该阵列保留了光纤束结构。传感器阵列的电化学行为通过循环伏安法和ECL实验独立表征。稳态电流表示传感器在扩散方面是独立的。利用共反应物ECL模型系统,如Ru-(bpy)_(3)〜(2 +)/ TPrA,对该传感器阵列进行了进一步研究。我们清楚地观察到了单个ECL测微点的有序阵列,它对应于传感器阵列的结构。虽然该阵列的传感器不是可以通过电化学方式单独寻址的,但我们可以确定传感器在光学上是独立的并且可以单独读取。最后,我们显示了通过光电化学传感器阵列本身可以定量执行远程ECL成像。

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