Evaluation of a novel microextraction technique for aqueous samples: porous membrane envelope filled with multiwalled carbon nanotubes coated with molecularly imprinted polymer

Tan, F; Deng, M; Liu, X; Zhao, H; Li, X; Quan, X; Chen, J

HERO ID

738512

Reference Type

Journal Article

Year

2011

Language

English

PMID

21312332

HERO ID 738512
In Press No
Year 2011
Title Evaluation of a novel microextraction technique for aqueous samples: porous membrane envelope filled with multiwalled carbon nanotubes coated with molecularly imprinted polymer
Authors Tan, F; Deng, M; Liu, X; Zhao, H; Li, X; Quan, X; Chen, J
Journal Journal of Separation Science
Volume 34
Issue 6
Page Numbers 707-715
Abstract A novel microextraction technique based on membrane-protected multiwalled carbon nanotubes coated with molecularly imprinted polymer (MWCNTs-MIP) was developed. In this technique, MWCNTs-MIP were packed inside a polypropylene membrane envelope, which was then clamped onto a paper clip. For extraction, the packed membrane envelope was first impregnated with toluene and then placed in sample solutions. Target analytes in the solutions were first extracted into toluene in the membrane envelope, and were then extracted specifically onto the MWCNTs-MIP. After the extraction, target analytes were desorbed in methanol for liquid chromatography analysis. MWCNTs-MIP of prometryn were used as a model to demonstrate the feasibility of this novel microextraction technique. Factors affecting the extraction including organic solvent, stirring rate, extraction time, salt concentration, and pH were investigated. Under the optimized conditions, the limits of detection (a signal-to-noise ratio of 3) for the selected triazine herbicides were 0.08-0.38 μg/L. The prepared membrane envelope could be used at least 50 times. The developed method was used for the analysis of the triazines spiked in river water, wastewater, and liquid milk, with recoveries ranging from 79.3-97.4, 58.9-110.3 and 76.2-104.9%, respectively.
Doi 10.1002/jssc.201000791
Pmid 21312332
Is Certified Translation No
Dupe Override No
Comments Source: Web of Science 000288545300015
Is Public Yes
Language Text English
Keyword HPLC; Microextraction; Molecularly imprinted polymer; Triazines
Is Qa No