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Application of Molecularly Imprinted Polymers in the Analysis of Waters and Wastewaters
Authors:Mahmoud G Metwally  Abdelaziz H Benhawy  Reda M Khalifa  Rasha M El Nashar  Marek Trojanowicz
Institution:1.Chemistry Department, Faculty of Science, Cairo University, Giza 12613, Egypt; (M.G.M.); (A.H.B.); (R.M.K.);2.Institute of Nuclear Chemistry and Technology, Dorodna 16, 03-195 Warsaw, Poland;3.Department of Chemistry, University of Warsaw, Pasteura 1, 02-093 Warsaw, Poland
Abstract:The increase of the global population and shortage of renewable water resources urges the development of possible remedies to improve the quality and reusability of waste and contaminated water supplies. Different water pollutants, such as heavy metals, dyes, pesticides, endocrine disrupting compounds (EDCs), and pharmaceuticals, are produced through continuous technical and industrial developments that are emerging with the increasing population. Molecularly imprinted polymers (MIPs) represent a class of synthetic receptors that can be produced from different types of polymerization reactions between a target template and functional monomer(s), having functional groups specifically interacting with the template; such interactions can be tailored according to the purpose of designing the polymer and based on the nature of the target compounds. The removal of the template using suitable knocking out agents renders a recognition cavity that can specifically rebind to the target template which is the main mechanism of the applicability of MIPs in electrochemical sensors and as solid phase extraction sorbents. MIPs have unique properties in terms of stability, selectivity, and resistance to acids and bases besides being of low cost and simple to prepare; thus, they are excellent materials to be used for water analysis. The current review represents the different applications of MIPs in the past five years for the detection of different classes of water and wastewater contaminants and possible approaches for future applications.
Keywords:molecularly imprinted polymers  solid phase extraction  heavy metals  synthetic dyes  bisphenols  personal care products  pharmaceutical compounds
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