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全光纤电化学传感

All-in-Fiber Electrochemical Sensing.

作者信息

Richard I, Schyrr B, Aiassa S, Carrara S, Sorin F

机构信息

Institute of Materials, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.

Integrated Systems Laboratory, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.

出版信息

ACS Appl Mater Interfaces. 2021 Sep 15;13(36):43356-43363. doi: 10.1021/acsami.1c11593. Epub 2021 Sep 7.

DOI:10.1021/acsami.1c11593
PMID:34490779
Abstract

Electrochemical sensors have found a wide range of applications in analytical chemistry thanks to the advent of high-throughput printing technologies. However, these techniques are usually limited to two-dimensional (2D) geometry with relatively large minimal feature sizes. Here, we report on the scalable fabrication of monolithically integrated electrochemical devices with novel and customizable fiber-based architectures. The multimaterial thermal drawing technique is employed to co-process polymer composites and metallic glass into uniform electroactive and pseudoreference electrodes embedded in an insulating polymer cladding fiber. To demonstrate the versatility of the process, we tailor the fiber microstructure to two configurations: a small-footprint fiber tip sensor and a high-surface-area capillary cell. We demonstrate the performance of our devices using cyclic voltammetry and chronoamperometry for the direct detection and quantification of paracetamol, a common anesthetic drug. Finally, we showcase a fully portable pipet-based analyzer using low-power electronics and an "electrochemical pipet tip" for direct sampling and analysis of microliter-range volumes. Our approach paves the way toward novel materials and architectures for efficient electrochemical sensing to be deployed in existing and novel personal care and surgical configurations.

摘要

由于高通量印刷技术的出现,电化学传感器在分析化学领域得到了广泛应用。然而,这些技术通常限于具有相对较大最小特征尺寸的二维(2D)几何结构。在此,我们报告了具有新颖且可定制的基于纤维架构的单片集成电化学器件的可扩展制造方法。采用多材料热拉伸技术将聚合物复合材料和金属玻璃共同加工成嵌入绝缘聚合物包层纤维中的均匀电活性和伪参比电极。为了证明该工艺的通用性,我们将纤维微观结构定制为两种配置:小尺寸纤维尖端传感器和高表面积毛细管池。我们使用循环伏安法和计时电流法来展示我们器件对常见麻醉药物对乙酰氨基酚进行直接检测和定量的性能。最后,我们展示了一种完全便携式的基于移液器的分析仪,它使用低功耗电子设备和“电化学移液器尖端”来直接采样和分析微升量级的体积。我们的方法为新型材料和架构铺平了道路,以实现高效的电化学传感,可应用于现有及新型个人护理和手术配置中。

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All-in-Fiber Electrochemical Sensing.全光纤电化学传感
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Flexible multimaterial fibers in modern biomedical applications.现代生物医学应用中的柔性多材料纤维。
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