Back to Search Start Over

L-Cysteine self-assembled Au(1 1 1)-like nanoparticles modified indium tin oxide electrode for determination of dopamine in the present of uric acid.

Authors :
Shen, Hailin
Wang, Wei
Wang, Min
Zhang, Wei
Zhang, Yuheng
Kong, Xianqiang
Cao, Xiaowei
Source :
Microchemical Journal. Mar2022, Vol. 174, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

[Display omitted] • A novel L-Cysteine self-assembled gold nanoparticles modified indium tin oxide electrode (ITO/Au/L-Cys) was obtained through a facile two step. • Comparing to bare Au, ITO/Au/L-Cys displays a highly sensitive and selective behavior for DA in the interference of UA. • ITO/Au/L-Cys exhibits an excellent electrocatalytic activity towards DA with the linear range of 2 μM ∼ 400 μM and a limit of detection reaches up to 0.6 μM. A novel L-Cysteine self-assembled gold nanoparticles modified indium tin oxide electrode (ITO/Au/L-Cys) was fabricated by facile steps of electro-deposition and immersion in solution. The as-prepared ITO/Au/L-Cys electrode is investigated as a potential electrochemical sensor for dopamine (DA) in the interference of Uric Acid (UA). It combines the catalytic advantages of the Au(1 1 1)-like nanoparticles array with self-assembled L-Cysteine. The biosensor displays a highly sensitive and selective behavior for DA in the present of UA. The peak currents response to DA is linear with their concentrations in the range of 2 μM ∼ 400 μM. In addition, a limit of detection reaches up to 0.6 μM (S/N = 3). Consequently, the high sensitivity, stability and excellent biocompatibility of ITO/Au/L-Cys electrode made it as a promising DA sensor. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0026265X
Volume :
174
Database :
Academic Search Index
Journal :
Microchemical Journal
Publication Type :
Academic Journal
Accession number :
154437889
Full Text :
https://doi.org/10.1016/j.microc.2021.107043