NMR Spectroelectrochemistry in Studies of Dopamine Oxidation

In this paper, the electrochemical oxidation of dopamine was studied by using gold nanoparticles modified nano-polyaniline film as the catalyst. Electrochemistry and nuclear magnetic resonance spectroscopy (EC–NMR) was used to investigate electro-catalytic mechanism and evaluate the electro-catalyti...

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Main Authors: Xiao-Ping ZHANG, Wei SUN, Shuo-Hui CAO, Wen-Long JIANG, Hao PENG, Shu-Hui CAI, Zhong CHEN
Format: Article
Language:English
Published: The Electrochemical Society of Japan 2020-05-01
Series:Electrochemistry
Subjects:
Online Access:https://www.jstage.jst.go.jp/article/electrochemistry/88/3/88_19-00083/_pdf/-char/en
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spelling doaj-f254fe6cacdb46ddaab9c3ef41c5c8012021-09-02T07:55:06ZengThe Electrochemical Society of JapanElectrochemistry2186-24512020-05-0188320020410.5796/electrochemistry.19-00083electrochemistryNMR Spectroelectrochemistry in Studies of Dopamine OxidationXiao-Ping ZHANG0Wei SUN1Shuo-Hui CAO2Wen-Long JIANG3Hao PENG4Shu-Hui CAI5Zhong CHEN6Key Laboratory of Laser Technology and Optoelectronic Functional Materials of Hainan Province, Key Laboratory of Functional Materials and Photoelectrochemistry of Haikou, College of Chemistry and Chemical Engineering, Hainan Normal UniversityKey Laboratory of Laser Technology and Optoelectronic Functional Materials of Hainan Province, Key Laboratory of Functional Materials and Photoelectrochemistry of Haikou, College of Chemistry and Chemical Engineering, Hainan Normal UniversityDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory for Physical Chemistry of Solid Surfaces, Xiamen UniversityDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory for Physical Chemistry of Solid Surfaces, Xiamen UniversityDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory for Physical Chemistry of Solid Surfaces, Xiamen UniversityDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory for Physical Chemistry of Solid Surfaces, Xiamen UniversityDepartment of Electronic Science, Fujian Provincial Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory for Physical Chemistry of Solid Surfaces, Xiamen UniversityIn this paper, the electrochemical oxidation of dopamine was studied by using gold nanoparticles modified nano-polyaniline film as the catalyst. Electrochemistry and nuclear magnetic resonance spectroscopy (EC–NMR) was used to investigate electro-catalytic mechanism and evaluate the electro-catalytic capacity. The influence of varied pH values and voltages in the electrocatalytic process was studied. The oxidation mechanism of dopamine can be proposed: (1) at pH 1 and 600 mV, the main oxidation product is dopamine quinone (DQ). Only a small amount of DQ occurs cyclization reaction to form quinone aminochrome (AC); (2) at pH 1 and 800 mV, the oxidation products are DQ and 5,6-dihydroxyindole (DHI). (3) With the pH value increases, the oxidation of dopamine steps over DQ and AC, and directly produces DHI. DHI is aggregated to form melanin sediment. Our results indicate that the gold nanoparticles modified electrode displays high catalytic performance toward dopamine electrochemical oxidation.https://www.jstage.jst.go.jp/article/electrochemistry/88/3/88_19-00083/_pdf/-char/enec-nmrpolyanilineelectro-catalysisdopamine
collection DOAJ
language English
format Article
sources DOAJ
author Xiao-Ping ZHANG
Wei SUN
Shuo-Hui CAO
Wen-Long JIANG
Hao PENG
Shu-Hui CAI
Zhong CHEN
spellingShingle Xiao-Ping ZHANG
Wei SUN
Shuo-Hui CAO
Wen-Long JIANG
Hao PENG
Shu-Hui CAI
Zhong CHEN
NMR Spectroelectrochemistry in Studies of Dopamine Oxidation
Electrochemistry
ec-nmr
polyaniline
electro-catalysis
dopamine
author_facet Xiao-Ping ZHANG
Wei SUN
Shuo-Hui CAO
Wen-Long JIANG
Hao PENG
Shu-Hui CAI
Zhong CHEN
author_sort Xiao-Ping ZHANG
title NMR Spectroelectrochemistry in Studies of Dopamine Oxidation
title_short NMR Spectroelectrochemistry in Studies of Dopamine Oxidation
title_full NMR Spectroelectrochemistry in Studies of Dopamine Oxidation
title_fullStr NMR Spectroelectrochemistry in Studies of Dopamine Oxidation
title_full_unstemmed NMR Spectroelectrochemistry in Studies of Dopamine Oxidation
title_sort nmr spectroelectrochemistry in studies of dopamine oxidation
publisher The Electrochemical Society of Japan
series Electrochemistry
issn 2186-2451
publishDate 2020-05-01
description In this paper, the electrochemical oxidation of dopamine was studied by using gold nanoparticles modified nano-polyaniline film as the catalyst. Electrochemistry and nuclear magnetic resonance spectroscopy (EC–NMR) was used to investigate electro-catalytic mechanism and evaluate the electro-catalytic capacity. The influence of varied pH values and voltages in the electrocatalytic process was studied. The oxidation mechanism of dopamine can be proposed: (1) at pH 1 and 600 mV, the main oxidation product is dopamine quinone (DQ). Only a small amount of DQ occurs cyclization reaction to form quinone aminochrome (AC); (2) at pH 1 and 800 mV, the oxidation products are DQ and 5,6-dihydroxyindole (DHI). (3) With the pH value increases, the oxidation of dopamine steps over DQ and AC, and directly produces DHI. DHI is aggregated to form melanin sediment. Our results indicate that the gold nanoparticles modified electrode displays high catalytic performance toward dopamine electrochemical oxidation.
topic ec-nmr
polyaniline
electro-catalysis
dopamine
url https://www.jstage.jst.go.jp/article/electrochemistry/88/3/88_19-00083/_pdf/-char/en
work_keys_str_mv AT xiaopingzhang nmrspectroelectrochemistryinstudiesofdopamineoxidation
AT weisun nmrspectroelectrochemistryinstudiesofdopamineoxidation
AT shuohuicao nmrspectroelectrochemistryinstudiesofdopamineoxidation
AT wenlongjiang nmrspectroelectrochemistryinstudiesofdopamineoxidation
AT haopeng nmrspectroelectrochemistryinstudiesofdopamineoxidation
AT shuhuicai nmrspectroelectrochemistryinstudiesofdopamineoxidation
AT zhongchen nmrspectroelectrochemistryinstudiesofdopamineoxidation
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