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Chemical structure, synthesis, and physical and chemical properties of porous polymers as materials applied in analytical chemistry and environmental protection


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ALEKSANDER C., ANDERSSON H. S, ANDERSSON L. I., ANSELL R. J. 2006. Molecular imprinting science and technology: a subway of the literature for the years up to and including. J. Mol. Recognit., 19:106-180.10.1002/jmr.760Search in Google Scholar

ANDERSSON L. I. 2000. Moleculary imprinting: development and applications in the analytica chemistry field. J. of Chromatogr. B, 745: 3-13.Search in Google Scholar

BELTRAN A., MARCE R. M., CORMACK P. A. G., BORRULL F. 2009. Synthesis by precipitation polymerisation of moleculary imprinted polymer microspheres for the selective extraction of cabamazepine and oxacarbamazepine from human urine. J. of Chromatogr. A 1216: 2248-2253.10.1016/j.chroma.2009.01.024Search in Google Scholar

BERECZKI A., TOLOKAN A., HORVANI G. 2001. Determination of phenytoin in plasma by moleculary imprinted solid- phase extraction. J. of Chromatogr. A, 930:31-38.10.1016/S0021-9673(01)01190-6Search in Google Scholar

BOSSI A., BONINI F., TURNER A.P.F. 2007. Moleculary imprinted polymers for the recognition of proteins: The state of the art, Biosensors and Bioelectronics. 22: 1131-1137.Search in Google Scholar

CHING-CHING H., WEN-CHIEN L. 2001. Chromatographic resolution of the enantiomers of phenylpropanolamine by using moleculary imprinted polymers as the stationary phase. J. of Chromatogr. B, 765: 45-53.Search in Google Scholar

FENG L., XIAO L., SIU- CHOON N. 2006. Enantioselective molecular imprinting polymer coated QCM for the recognition of L-tryptophan, Sensors and Actuators B. 113: 234-240.Search in Google Scholar

HILT Z. J., BYRNE E. M. 2004. Configuration biomimiesis in drug delivery molecular imprinting of biologically significant molecules. Advanced Drug Delivery Reviews. 56: 1599-1620.10.1016/j.addr.2004.04.00215350291Search in Google Scholar

HU S. G., LI L., HE X. W. 2005. Comparison of trimetoprim moleculary imprinted polymers in bulk and in sphere as the sorbent for solid- phase extraction and extraction trimethoprim from human urine and pharmaceutical tablet and her determination by high- performance liquid chromatography. Anal. Chim. Acta, 537: 215-222.Search in Google Scholar

KAPŁON Ł., Polimeyzacja w masie styrenu i jego pochodnych jako materiału do konstrukcji scyntylatorów. 2011. Wydawnictwo Uniwersytet Jagielloński.Search in Google Scholar

KARIM K., BRETON F., ROUILLON R. 2005. How to find effective functional monomers for effective moleculary imprinted polymers? Advanced Drug Delivery Reviews. 2005, 57: 1795-1808.Search in Google Scholar

LULIŃSKI P., CIEŚLAK A., MACIEJEWSKA D. 2008. Synteza polimerów imprintwanych dopaminą i teoretyczna analiza oddziaływań międzycząsteczkowych w kompleksie prepolimeryzacyjnym, Biul. Wydz. Farm. WUM. 1: 1-11.Search in Google Scholar

MALISZEWSKA-MAZUR M. 2010. Reach - ecological criteria and procedures for evaluation of chemicals. Environmental Protection and Natural Resources. 42: 11-23.Search in Google Scholar

METILDA P., PRASAD K., KALA R. 2007. Ion imprinted polymer based sensor for monitoring toxic uranium in environment al samples. Anal. Chim. Acta, 582: 147-153.Search in Google Scholar

MODISE R.2010. An Ion imprinted polymer for the determination of Ni(II) ions from mine tailing samples. Rhodes University.Search in Google Scholar

MORELLI I., CHIONO V., VOZZI G. 2010. Moleculary imprinted submicrospheres for applications in a novel model biosensorsfilm. ensors and Actuators B: Chemical, 150: 394-401.Search in Google Scholar

OTERO-ROMANI J., MOREDA-PINEIRO A., BERMEJOBERRERA P. 2009. Inductively coupled plasma-optical emission spectrometry/mass spectrometry for the determination of Cu, Ni, Pb, Zn in seawater after ionic imprinted polymer based solid phase extraction. Talanta. 79: 723-729.Search in Google Scholar

PALUSZEK J. 2010. Effect of addition of agroaquagel 420 on physical properties of eroded luvisol. Environmental Protection and Natural Resources. 44: 107-116.Search in Google Scholar

PICHON V., CHAPUIS-HUGON F. 2008. Role of moleculary imprinted polymers for selective determination of environment al pollutants. A Reviu. Anal. Chim. Acta, 622: 48-61.Search in Google Scholar

PILETSKA E., GUERREIRO A., WHITCOMBE M., PILETSKY S. 2009. Influence of the polymerization conditions on the performance of molecularly imprinted polymers. acromolecules, 42: 4921-4928.Search in Google Scholar

PUOCI F., CIRILLO G., CURCIO M. 2007. Moleculary imprinted sold phase extraction for selective HPLC determination of α-tocopherol in by leaves. Anal. Chim. Acta. 593: 164-170.10.1016/j.aca.2007.04.05317543603Search in Google Scholar

SCORRANO S., MERGOLA L., DEL SOLE R. 2011. Synthesis of Moleculary Imprinted polymers of Amino Acid Derivates by Using Different Functional Monomers. Int. J. Mol. Sci 12: 1735-1743.10.3390/ijms12031735311163021673919Search in Google Scholar

SELLERGEN B. 2001. Imprinted chiral stationary phases in highperformance liquid chromatography. J. Chromatogr. A, 906: 227-252.Search in Google Scholar

TAMAYO F. G., TURIEL E., MARTIN-ESTEBAN A. 2007. oleculary imprinted polymers for solid-phase extraction and solid phase microextraction: Recent developments and future trends. J. of Chromatory. A, 1152:32 - 40.10.1016/j.chroma.2006.08.09517010356Search in Google Scholar

VASAPOLLO G., DEL SOLE R., MERGOLA L. 2011. Moleculary Imprinted Polymers: Presents and Future Prospective. Int. J. Mol. Sci., 12: 5908-5945.Search in Google Scholar

WEL. S., MIZALKOFF B. 2007. Recent advances on noncovalent molecular imprints for affinity separations. J. Sep. Sci, 30:1794-1805.10.1002/jssc.20070016617623455Search in Google Scholar

WULFF G., SARHAN A., ZABROCKI K. 1973. Enzyme-analogue built polymers and their use for the resolution of racemates. Tetrahedron Letters 14, 44: 4329-4332.Search in Google Scholar

YAN H., HO ROW K. 2006. Characteristic and Synthetic Approach of Moleculary Imprinted Polymer. Int. J. Mol. Sci. 7: 155-178. 10.3390/i7050155Search in Google Scholar

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