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Original Articles

Synthesis and characterization of novel water-compatible magnetic molecularly imprinted polymer for tartrazine

, , ORCID Icon &
Pages 706-721 | Received 01 Aug 2018, Accepted 27 Oct 2018, Published online: 29 Dec 2018

References

  • I. Gonzalez, J.Q.I.R.R. Rodil. Comparison of molecularly imprinted, mixed-mode and hydrophilic balance sorbents performance in the solid-phase extraction of amphetamine drugs from wastewater samples for liquid chromatography–tandem mass spectrometry determination. J. Chromatogr. A, 2009, 7, 1216–1220.
  • X. Luo, Y. Zhan, X. Tu, Y. Huang, S. Luo, L. Yan. Novel molecularly imprinted polymer using 1-(alpha-methyl acrylate)-3-methylimidazolium bromide as functional monomer for simultaneous extraction and determination of water-soluble acid dyes in wastewater and soft drink by solid phase extraction and high performance liquid chromatography. J .Chromatogr. A, 2011, 1218, 1115–1121.
  • X. Luo, Y. Zhan, Y. Huang, L. Yang, X. Tu, S. Luo. Removal of water-soluble acid dyes from water environment using a novel magnetic molecularly imprinted polymer. J .Hazard. Mater., 2011, 187, 274–282.
  • M.V. Foguel, N.T.B. Pedro, A. Wong, S. Khan, M.V.B. Zanoni, M.d.P.T. Sotomayor. Synthesis and evaluation of a molecularly imprinted polymer for selective adsorption and quantification of Acid Green 16 textile dye in water samples. Talanta, 2017, 170, 244–251.
  • B. Gao, X. Cha, T. Chen, L. Fan. Designing and preparing of acid dye surface-imprinted material for effective removal of acid dyes from water. J .Environ. Chem. Eng., 2015, 3, 277–285.
  • Scientific Committee for Food, Reports of the Scientific Committee for Food 14th series. 1984.
  • S. K. Nataraj, K. M. H. T. M. Aminabhavi. Nanofiltration and reverse osmosis thin film composite membrane module for the removal of dye and salts from the simulated mixtures. J. Des., 2009, 249, 12–17.
  • A. Maljaei, M.A.N. Mahmoodi. Decolorization and aromatic ring degradation of colored textile wastewater using indirect electrochemical oxidation method. J. Des., 2009, 249, 1074–1078.
  • M. Zhu, S. Wang, S. Li. Titanium catalyst with the molecular imprinting of substrate for selective photo catalysis. J .Chin. Adv. Mater. Soc., 2014, 2, 71–78.
  • M. Darwish, A. Mohammadi, N. Assi. Microwave-assisted polyol synthesis and characterization of PVP-capped CdS nanoparticles for the photocatalytic degradation of tartrazine. Mater. Res. Bull., 2016, 74, 387–396.
  • Y. Liu, X. Zhu, S. Wang, M. Zhao. Surface imprinted superparamagnetic nanoparticles for rapid and efficient extraction of bisphenol A from water samples. J .Chin. Adv. Mater. Soc., 2013, 1,166–171.
  • N. Arabzadeh, A. Khosravi, A. Mohammadi, N.M. Mahmoodi. Enhanced photodegradation of hazardous tartrazine by composite of nanomolecularly imprinted polymer-nanophotocatalyst with high efficiency. Desal. Water. Treat, 2014, 8, 1–10.
  • N. Arabzadeh, A. Khosravi, A. Mohammadi, N. M. Mahmoodi, M. Khorasani. Synthesis, characterization, and application of nano-molecularly imprinted polymer for fast solid-phase extraction of tartrazine from water environment. J. Desal. Water. Treat, 2015, 54, 2452–2460.
  • K. Karim, L. Giannoudi, E. Piletska, I. Chianella, O. Y.F. Henry, P. Laitenberger, S. A. Piletsky, T. Cowen. Development of MIP sensor for monitoring propofol in clinical procedures. J. Chin. Adv. Mater. Soc., 2015, 3, 144–157.
  • A. Prieto, S.S.C.B. M. Der. Synthesis of a molecularly imprinted polymer and its application for microextraction by packed sorbent for the determination of fluoroquinolone related compounds in water. Anal. Chim. Acta, 2011, 685, 7–14.
  • F. F. Chen, X. Y. Xie, Y.P. Shi. Preparation of magnetic molecularly imprinted polymer for selective recognition of resveratrol in wine. J. Chromatogr A, 2013, 1300, 112–118.
  • X. Kong, R. Gao, X. He, L. Chen, Y. Zhang. Synthesis and characterization of the core-shell magnetic molecularly imprinted polymers (Fe(3)O(4)@MIPs) adsorbents for effective extraction and determination of sulfonamides in the poultry feed. J. Chromatogr. A, 2012, 1245, 8–16.
  • X. Wu, X. Wang, W. Lu, X. Wang, J. Li, H. You, H. Xiong, L. Chen. Water-compatible temperature and magnetic dual-responsive molecularly imprinted polymers for recognition and extraction of bisphenol A. J. Chromatogr. A, 2016, 1435, 30–38.
  • X. Xu, E. Duhoranimana, X. Zhang. Preparation and characterization of magnetic molecularly imprinted polymers for the extraction of hexamethylenetetramine in milk samples. Talanta, 2017, 163, 31–38.
  • X. Wang, P. Huang, X. Ma, H. Wang, X. Lu, X. Du. Preparation and evaluation of magnetic core-shell mesoporous molecularly imprinted polymers for selective adsorption of tetrabromobisphenol S. Talanta, 2017, 166, 300–305.
  • L. Chang, S. Chen, X. Li. Synthesis and properties of core-shell magnetic molecular imprinted polymers. Appl. Surf. Sci., 2012, 258, 6660–6664.
  • T. Jing, H. Du, Q. Dai, H. Xia, J. Niu, Q. Hao, S. Mei, Y. Zhou. Magnetic molecularly imprinted nanoparticles for recognition of lysozyme. Biosens. Bioelec., 2010, 26, 301–306.
  • B. Gao, J. Du, Y. Zhang. Preparation of arsenate anion surface-imprinted material IIP-PDMC/SiO2 and study on its ion recognition property. Ind. Eng. Chem. Res., 2013, 52, 7651–7659.
  • S. Shi, J. Guo, Q. You, X. Chen, Y. Zhang. Selective and simultaneous extraction and determination of hydroxybenzoic acids in aqueous solution by magnetic molecularly imprinted polymers, Chem. Eng. J., 2014, 243, 485–493.
  • M. Li, R. Li, J. Tan, Z. T. Jiang. Titania-based molecularly imprinted polymer for sulfonic acid dyes prepared by sol-gel method. Talanta, 2013, 107, 203–210.
  • N. Arabzadeh, M. Abdouss. Synthesis and characterization of molecularly imprinted polymers for selective solid-phase extraction of pseudoephedrine. Colloid J., 2010, 72, 446–455.
  • Y. Liu, Y. Huang, J. Liu, W. Wang, G. Liu, R. Zhao. Superparamagnetic surface molecularly imprinted nanoparticles for water-soluble pefloxacin mesylate prepared via surface initiated atom transfer radical polymerization and its application in egg sample analysis. J. Chromatogr A, 2012, 1246, 15–21.
  • X. Xie, L. Chen, X. Pan, S. Wang. Synthesis of magnetic molecularly imprinted polymers by reversible addition fragmentation chain transfer strategy and its application in the Sudan dyes residue analysis. J. Chromatogr A, 2015, 1405, 32–39.
  • S. Yaripour, A. Mohammadi, S. Nojavan. Electromembrane extraction of tartrazine from food samples: effects of nano-sorbents on membrane performance. J. Sep. Sci., 2016, 39, 2642–2651.

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