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Spirally oriented Au microelectrode array sensor for detection of Hg (II)

Authors
Tran Ngoc HuanLe Quoc HungVu Thi Thu HaNguyen Hoang AnhTran Van KhaiShim, Kwang BoChung, Hoeil
Issue Date
May-2012
Publisher
ELSEVIER
Keywords
Microelectrode array sensor; Carbon fiber; Gold microelectrode; Mercury detection; Diffusive interference
Citation
TALANTA, v.94, pp.284 - 288
Indexed
SCIE
SCOPUS
Journal Title
TALANTA
Volume
94
Start Page
284
End Page
288
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/165743
DOI
10.1016/j.talanta.2012.03.041
ISSN
0039-9140
Abstract
A simple and reproducible carbon microelectrode array (CMA), designed to eliminate diffusive interference among the microelectrodes, has been fabricated and used as a frame to build a gold (Au) microelectrode array (GMA) sensor. To prepare the CMA initially, rather than use an uncontrollable large number of carbon fibers, only 60 carbon fibers of regular size were used to ensure manageable and reproducible arrangement for array construction. In addition, for efficient spatial arrangement of the microelectrode and easy sensor preparation, carbon fibers were oriented in a spiral fashion by rolling around a Cu wire. The distance between carbon fibers was carefully determined to avoid overlap among individual diffusion layers, one of the important factors governing steady-state current response and sensor-to-sensor reproducibility. After the preparation of a spirally arranged CMA, Au was electrochemically deposited on the surface of individual carbon electrodes to build a final GMA sensor. Then, the GMA sensor was used to measure Hg2+ in a low concentration range. Simultaneously, multiple GMA sensors were independently prepared to examine reproducibility in sensor fabrication as well as electrochemical measurement (sensor-to-sensor reproducibility). Overall, highly sensitive detection of Hg2+ was possible using the proposed GMA sensor due to efficient arrangement of microelectrodes and the sensor-to-sensor reproducibility was superior owing to simplicity in sensor fabrication.
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