Literature DB >> 20103135

Catalytic molecularly imprinted polymer membranes: development of the biomimetic sensor for phenols detection.

T A Sergeyeva1, O A Slinchenko, L A Gorbach, V F Matyushov, O O Brovko, S A Piletsky, L M Sergeeva, G V Elska.   

Abstract

Portable biomimetic sensor devices for the express control of phenols content in water were developed. The synthetic binding sites mimicking active site of the enzyme tyrosinase were formed in the structure of free-standing molecularly imprinted polymer membranes. Molecularly imprinted polymer membranes with the catalytic activity were obtained by co-polymerization of the complex Cu(II)-catechol-urocanic acid ethyl ester with (tri)ethyleneglycoldimethacrylate, and oligourethaneacrylate. Addition of the elastic component oligourethaneacrylate provided formation of the highly cross-linked polymer with the catalytic activity in a form of thin, flexible, and mechanically stable membrane. High accessibility of the artificial catalytic sites for the interaction with the analyzed phenol molecules was achieved due to addition of linear polymer (polyethyleneglycol Mw 20,000) to the initial monomer mixture before the polymerization. As a result, typical semi-interpenetrating polymer networks (semi-IPNs) were formed. The cross-linked component of the semi-IPN was represented by the highly cross-linked catalytic molecularly imprinted polymer, while the linear one was represented by polyethyleneglycol Mw 20,000. Extraction of the linear polymer from the fully formed semi-IPN resulted in formation of large pores in the membranes' structure. Concentration of phenols in the analyzed samples was detected using universal portable device oxymeter with the oxygen electrode in a close contact with the catalytic molecularly imprinted polymer membrane as a transducer. The detection limit of phenols detection using the developed sensor system based on polymers-biomimics with the optimized composition comprised 0.063 mM, while the linear range of the sensor comprised 0.063-1 mM. The working characteristics of the portable sensor devices were investigated. Storage stability of sensor systems at room temperature comprised 12 months (87%). As compared to traditional methods of phenols detection the developed sensor system is characterized by simplicity of operation, compactness, and low cost. Copyright 2009 Elsevier B.V. All rights reserved.

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Year:  2009        PMID: 20103135     DOI: 10.1016/j.aca.2009.11.065

Source DB:  PubMed          Journal:  Anal Chim Acta        ISSN: 0003-2670            Impact factor:   6.558


  4 in total

1.  Molecularly imprinted membranes.

Authors:  Francesco Trotta; Miriam Biasizzo; Fabrizio Caldera
Journal:  Membranes (Basel)       Date:  2012-07-19

2.  Synthesis, characterization, and evaluation of selective molecularly imprinted polymers for the fast determination of synthetic cathinones.

Authors:  Hong Chen; Fangsheng Wu; Yibing Xu; Yuan Liu; Lun Song; Xiujuan Chen; Qun He; Wei Liu; Qiaoying Han; Zihua Zhang; Yun Zou; Wenbin Liu
Journal:  RSC Adv       Date:  2021-09-06       Impact factor: 4.036

Review 3.  Bio-mimetic sensors based on molecularly imprinted membranes.

Authors:  Catia Algieri; Enrico Drioli; Laura Guzzo; Laura Donato
Journal:  Sensors (Basel)       Date:  2014-07-30       Impact factor: 3.576

4.  Sensor Based on Molecularly Imprinted Polymer Membranes and Smartphone for Detection of Fusarium Contamination in Cereals.

Authors:  Tetyana Sergeyeva; Daria Yarynka; Larysa Dubey; Igor Dubey; Elena Piletska; Rostyslav Linnik; Maksym Antonyuk; Tamara Ternovska; Oleksandr Brovko; Sergey Piletsky; Anna El'skaya
Journal:  Sensors (Basel)       Date:  2020-08-01       Impact factor: 3.576

  4 in total

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