4.6 Article

Real-Time Detection of Glyphosate by a Water-Gated Organic Field-Effect Transistor with a Microfluidic Chamber

Journal

LANGMUIR
Volume 37, Issue 24, Pages 7305-7311

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.langmuir.1c00511

Keywords

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Funding

  1. Japan Society for the Promotion of Science (JSPS KAKENHI Grant) [JP21H01780, JP19H02354, JP20K21204, JP20H05207]
  2. JST CREST [JPMJCR2011]
  3. Foundation for the Promotion of Ion Engineering
  4. Noguchi Institute
  5. ADEKA Award in Synthetic Organic Chemistry, Japan
  6. Japan Society for the Promotion of Science (JSPS Core-to-Core Program)

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This study reports the development of a real-time monitoring system using a combination of WG-OFET and a microfluidic chamber for detecting glyphosate. The competitive complexation mechanism on the semiconductor surface induced changes in electrical capacitance for real-time quantitative sensing of glyphosate.
This paper reports the development of a real-time monitoring system utilizing the combination of a water-gated organic field-effect transistor (WG-OFET) and a microfluidic chamber for the detection of the herbicide glyphosate (GlyP). For the realization of the real-time sensing with the WG-OFET, the surface of a polymer semiconductor was utilized as a sensing unit. The aqueous solution including the target analyte, which is employed as a gate dielectric of the WG-OFET, flows into a designed microfluidic chamber on the semiconductor layer and the gate electrode. As the sensing mechanism, the WG-OFET-based sensor utilizes the competitive complexation among carboxylate-functionalized polythiophene, a copper(II) (Cu2+) ion, and GlyP. The reversible accumulation and desorption of the positively charged Cu2+ ion on the semiconductor surface induced a change in the electrical double-layer capacitance (EDLC). The optimization of the microfluidic chamber enables a uniform water flow and contributes to real-time quantitative sensing of GIyP at a micromolar level. Thus, this study would lead to practical real-time sensing in water for various fields including environmental assessment.

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