Composites of multiwalled carbon nanotubes/polyethyleneimine (MWCNTs/PEI) and molecularly imprinted polymers for dinitrotoluene recognition

文献类型: 外文期刊

第一作者: Nie, Dongxia

作者: Nie, Dongxia;Han, Zheng;Yu, Yanyan;Shi, Guoyue

作者机构:

关键词: Dinitrotoluene;Molecular imprinting;MWCNTs;PEI;Electrochemical sensor

期刊名称:SENSORS AND ACTUATORS B-CHEMICAL ( 影响因子:7.46; 五年影响因子:6.743 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: In this work, a novel strategy for the imprinting of 2,4-dinitrotoluene (DNT) molecule on the surface of functionalized multiwalled carbon nanotubes/polyethyleneimine (Fun-MWCNTs/PEI) was proposed and developed to prepare a highly selective DNT-imprinted electrochemical sensor. The electrochemical characteristics of the fabricated Fun-MWCNTs/PEI-MIPs sensor were investigated by cyclic voltammetry and differential pulse voltammetry in detail. Experimental results demonstrated that the Fun-MWCNTs/PEIMIPs modified electrode exhibited an excellent electrocatalytic activity to DNT and the current responses were found to be in a good linear range from 2.2 x 10(-9) mol/L to 1.0 x 10(-6) mol/L with the detection limit of 1.0 x 10(-9) mol/L (S/N= 3). Additionally, in comparison with other similar nitroaromatic compounds, a satisfactory selectivity toward DNT determination was also obtained due to the appearance of abundant effective imprinted sites at the surface or in the proximity of Fun-MWCNTs/PEI-MIPs films. In short, the surface molecular imprinted strategy presented in the current work developed a new way for the rapid, sensitive and selective measurement of trace DNT, which would exhibit a prospective in the on-line monitoring of nitroaromatic compounds (NACs) in the fields of industry and environmental monitoring. (C) 2015 Elsevier B.V. All rights reserved.

分类号: TP212.2

  • 相关文献

[1]A multi-residue method for the determination of pesticides in tea using multi-walled carbon nanotubes as a dispersive solid phase extraction absorbent. Lei, ShaoRong,Qiu, ShiTing,Guo, LingAn,Yi, ShengGuo,Liu, Wei,Hou, Xue,Hou, Xue.

[2]Identification of 3-chloro-1,2-propandiol using molecularly imprinted composite solid-phase extraction materials. Li, Yun,Zheng, Chuangmu,Li, Yun,Sun, Xiulan,Ouyang, Ben,Zhang, Yingzhi,Ni, Ping.

[3]Selective detection of fenaminosulf via a molecularly imprinted fluorescence switch and silver nano-film amplification. Li, Shuhuai,Yin, Guihao,Zhang, Qun,Li, Chunli,Luo, Jinhui,Xu, Zhi,Qin, Anli,Li, Shuhuai,Yin, Guihao,Zhang, Qun,Li, Chunli,Luo, Jinhui,Xu, Zhi,Qin, Anli,Li, Shuhuai,Yin, Guihao,Zhang, Qun,Li, Chunli,Luo, Jinhui,Xu, Zhi,Qin, Anli.

[4]Selective determination of dimethoate via fluorescence resonance energy transfer between carbon dots and a dye-doped molecularly imprinted polymer. Li, Shuhuai,Luo, Jinhui,Yin, Guihao,Xu, Zhi,Le, Yuan,Wu, Xiaofang,Wu, Nancun,Zhang, Qun.

[5]Molecularly Imprinting Polymer Electrochemical Sensor Based on Structure of Metal Organic Frameworks for Determination of Phenylethanolamine A in Swine Urine. Zhang Chun-Yan,Shi Lei,Wang Pei-Long,Su Xiao-Ou. 2016

[6]A novel electrochemical sensor for chlorophenols based on the enhancement effect of Al-doped mesoporous cellular foam. Jiang, Cuiwen,Yan, Feiyan,Xie, Liping,Li, Tao,Wang, Yanli,Wei, Liang. 2018

[7]Rapid and Sensitive Determination of Dinotefuran Residue Based on Electrochemical Enhancement of beta-cyclodextrin-Graphene Composite. Zhang, M.,Zhai, X. C.,Yang, X.,Zhao, H. T.,Dong, A. J.,Zhang, H.,Wang, J.,Liu, G. Y.,Zhang, M.,Wang, J..

[8]A highly selective electrochemical sensor based on molecularly imprinted polypyrrole-modified gold electrode for the determination of glyphosate in cucumber and tap water. Zhang, Chao,She, Yongxin,Zhao, Fengnian,Jin, Maojun,Zheng, Lufei,Wang, Shanshan,Jin, Fen,Shao, Hua,Wang, Jing,Li, Tengfei,Guo, Yirong,Liu, Haijin.

[9]Application of Au based nanomaterials in analytical science. Wang, Peilong,Su, Xiaoou,Tang, Zhiyong,Lin, Zhenyu.

[10]A simple and sensitive electrochemical sensor for new neonicotinoid insecticide Paichongding in grain samples based on beta-cyclodextrin-graphene modified glassy carbon electrode. Zhang, M.,Zhao, H. T.,Yang, X.,Dong, A. J.,Zhang, H.,Wang, J.,Liu, G. Y.,Zhai, X. C.,Zhang, M.,Wang, J..

[11]Electrochemical Determination of Caffeine in Tea Using a Polydopamine-Gold Nanocomposite. Zou, Dongsheng,Fu, Haiping,Zhang, Guolin,Xiao, Runlin,Liu, Jun,Li, Shaojing. 2017

[12]A RAPID ELECTROCHEMICAL MONITORING PLATFORM FOR SENSITIVE DETERMINATION OF THIAMETHOXAM BASED ON beta-CYCLODEXTRIN-GRAPHENE COMPOSITE. Zhai, Xingchen,Yang, Xin,Wang, Jing,Zhai, Xingchen,Zhang, Hua,Zhang, Min,Yang, Xin,Gu, Cheng,Zhao, Haitian,Wang, Zhenyu,Dong, Aijun,Wang, Jing,Zhou, Guopeng. 2017

[13]A Zinc Oxide Nanoflower-Based Electrochemical Sensor for Trace Detection of Sunset Yellow. Jiang, Cuiwen,Li, Tao,Liao, Jie,Fan, Yegeng,Wei, Yuning,Yan, Feiyan,Xie, Liping,Ya, Yu,Jiang, Cuiwen,Li, Tao,Liao, Jie,Fan, Yegeng,Wei, Yuning,Yan, Feiyan,Xie, Liping. 2017

作者其他论文 更多>>