An Electrochemical Nanosensor Based on Molecularly Imprinted Polymer (MIP) for Detection of Gallic Acid in Fruit Juices

被引:0
作者
Shahrzad Shojaei
Navid Nasirizadeh
Mehdi Entezam
Mojtaba Koosha
Mostafa Azimzadeh
机构
[1] Islamic Azad University,Department of Textile and Polymer Engineering, Yazd Branch
[2] Islamic Azad University,Young Researchers and Elite Club, Yazd Branch
[3] Yazd University,Department of Polymer Chemistry Engineering, School Technical and Engineering
[4] Shahid Beheshti University,Department of Pulp and Paper, Energy and New Technologies Engineering Faculty, Zirab Rachis
来源
Food Analytical Methods | 2016年 / 9卷
关键词
Molecularly imprinted polymer; MIP; Nanosensor; Gallic acid; Central composite design;
D O I
暂无
中图分类号
学科分类号
摘要
The molecularly imprinted polymer (MIP)-based electrochemical sensor has been attending recently, due to their exceptional advantages and specificity. Here, we successfully designed and fabricated a novel electrochemical nanosensor for determination of gallic acid (GA) based on its specific MIP. The MIP was synthesized using precipitation polymerization technique, via polymerization of methacrylic acid as a functional monomer. The MIP was applied in the multiwalled carbon nanotube-modified carbon paste electrode (MWCNT–CPE), and similarly, MIP and MWCNT-modified CPE (MIP–MWCNT–CPE) was prepared, which acted as the selective recognition element and pre-concentrator agent for GA. The effect of different factors such as quantity of MIP and MWCNT, GA solution pH, and GA accumulation time on an oxidation current of accumulated GA at the electrode were investigated and optimized by central composite design (CCD) as a an experimental design and response surface methodology. The results showed that fabricated nanosensors (MIP–MWCNT–CPE) have higher sensitivity compared with bare CPE, MWCNT–CPE, and MIP–CPE. This sensor showed a linear response range of 0.12–380.0 μM and detection limit of 47.0 nM. Finally, the nanosensor was applied to determine GA in apple, pineapple, orange juices, and a commercial green tea drink as real samples with satisfactory results.
引用
收藏
页码:2721 / 2731
页数:10
相关论文
共 196 条
[11]  
Zare M(2014)Thin-film electrochemical sensor for diphenylamine detection using molecularly imprinted polymers Anal Chim Acta 809 141-147
[12]  
Norouzi P(2008)Molecularly imprinted polymer based potentiometric sensor for the determination of hydroxyzine in tablets and biological fluids Anal Chim Acta 612 65-74
[13]  
Azimzadeh M(2014)Electrochemical determination of phenolic acids at a Zn/Al layered double hydroxide film modified glassy carbon electrode Electroanalysis 26 1664-1670
[14]  
Rahaie M(2013)Determination of gallic acid by flow injection analysis based on luminol-AgNO Chin J Chem 30 837-841
[15]  
Nasirizadeh N(2015)-Ag NPs chemiluminescence system Food Chem 172 56-62
[16]  
NaderiManesh H(2015)Photocontrolled solid-phase extraction of guanine from complex samples using a novel photoresponsive molecularly imprinted polymer Talanta 134 761-767
[17]  
Azimzadeh M(2013)Preparation of molecularly imprinted polymer with double templates for rapid simultaneous determination of melamine and dicyandiamide in dairy products Sens Actuators B 186 84-89
[18]  
Rahaie M(2015)Sensitive detection of gallic acid based on polyethyleneimine-functionalized graphene modified glassy carbon electrode Biosens Bioelectron 68 712-718
[19]  
Nasirizadeh N(2014)Construction a magneto carbon paste electrode using synthesized molecularly imprinted magnetic nanospheres for selective and sensitive determination of mefenamic acid in real samples J Chromatogr B 945–946 147-153
[20]  
Ashtari K(2014)Simultaneous detection of green tea catechin and gallic acid in human serum after ingestion of green tea tablets using ion-pair high-performance liquid chromatography with electrochemical detection J Chromatogr B 945–946 147-153