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Framing of Poly(arylene-ethynylene) around Carbon Nanotubes and Iodine Doping for the Electrochemical Detection of Dopamineopen access

Authors
Paul, JoseMoniruzzaman, MdKim, Jongsung
Issue Date
Mar-2023
Publisher
MDPI
Keywords
poly(arylene-ethynylene)-based COF; CMP-CNT-4 nanocomposite; I-doping; electrochemical sensor; dopamine detection
Citation
BIOSENSORS-BASEL, v.13, no.3
Journal Title
BIOSENSORS-BASEL
Volume
13
Number
3
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/87702
DOI
10.3390/bios13030308
ISSN
2079-6374
Abstract
Dopamine (DA), an organic biomolecule that acts as both a hormone and a neurotransmitter, is essential in regulating emotions and metabolism in living organisms. The accurate determination of DA is important because it indicates early signs of serious neurological disorders. Covalent organic frameworks (COFs) and metal-organic frameworks (MOFs) have received considerable attention in recent years as promising porous materials with an unrivaled degree of tunability for electrochemical biosensing applications. This study adopted a solvothermal strategy for the synthesis of a conjugated microporous poly(arylene ethynylene)-4 (CMP-4) network using the Sonagashira-Hagihara cross-coupling reaction. To increase the crystallinity and electrical conductivity of the material, CMP-4 was enveloped around carbon nanotubes (CNTs), followed by iodine doping. When used as an electrochemical probe, the as-synthesized material (I-2-CMP-CNT-4) exhibited excellent selectivity and sensitivity to dopamine in the phosphate-buffered solution. The detection limits of the electrochemical sensor were 1 and 1.7 mu M based on cyclic voltammetry (CV) and differential pulse voltammetry (DPV).
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