4.7 Article

Electrochemical Plasmonic Fiber-optic Sensors for Ultra-Sensitive Heavy Metal Detection

期刊

JOURNAL OF LIGHTWAVE TECHNOLOGY
卷 37, 期 14, 页码 3495-3502

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JLT.2019.2917329

关键词

Differential pulse anodic stripping voltammetry; heavy metal detection; optical fiber sensor; surface plasmon resonance

资金

  1. National Natural Science Foundation for Excellent Youth Foundation of China [61722505]
  2. National Natural Science Foundation of China [51773084, 41877045]
  3. Key Program of Guangdong Natural Science Foundation [2018B030311006]
  4. Major Program of Higher Education of Guangdong [2017KZDXM029]
  5. F.R.S.-FNRS

向作者/读者索取更多资源

Real-time and high-sensitivity monitoring of heave metal ions in solution is of great significance in environmental monitoring. The traditional electrochemical methods suffer from electrochemical noise and environmental interferences for heavy metal trace detection. To address these issues, we propose a novel electrochemical surface plasmon resonance (EC-SPR) optical fiber sensor. The sensor comprises a tilted fiber Bragg grating imprinted in a commercial single-mode fiber and coated with a nanoscale gold film for high-efficiency SPR excitation. The gold-coated optical fiber serves as a working electrode, performing the dual functions of anodic stripping voltammetry and SPR optical sensing. We demonstrate detection of Pb2+ as an example of a typical heavy metal ion. We show a stable and reproducible correlation between the realtime ion deposition-stripping cycles and the optical transmission of the optical fiber, with a limit of detection of 10(-10) M and a dynamic range of nearly five orders of magnitude. Moreover, by taking derivative of the SPR amplitude change, we can clearly identify the peak stripping potential of the detected ions, and therefore, realize specific ion identification. The method proposed is inherently immune to temperature cross-talk because the core mode is temperature dependent but insensitive to the surrounding media. The proposed EC-SPR fiber-optic sensor has the advantages of compact size, flexible shape, and remote operation capability. thereby, opening the way for other opportunities for electrochemical monitoring in various hard-to-reach locations and remote environments.

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