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Screening molecularly imprinted polymers

N. Kirsch, J.P. Hart, D.J. Bird, R.W. Luxton and D.V. McCalley, Towards the development of molecularly imprinted polymer based screen-printed sensors for metabolites of PAHs, Analyst, 126 (2001) 1936-1941. [Pg.552]

N. Kirsch, K.C. Honeychurch, J.P. Hart and M.J. Whitcombe, Voltammetric determination of urinary 1-hydroxypyrene using molecularly imprinted polymer-modified screen-printed carbon electrodes, Electroanalysis, 17 (2005) 571-578. [Pg.554]

O Connor NA, Paisner DA, Huryn D, Shea KJ (2007) Screening of 5-HTlA receptor antagonists using molecularly imprinted polymers. J Am Chem Soc 129 1680... [Pg.490]

Lanza, F. Sellergren B., Method for synthesis and screening of large groups of molecularly imprinted polymers, Anal. Chem. 1999, 71, 2092-2096... [Pg.167]

Cederfur, J. Pei, Y. Meng, Z. Kempe, M., Synthesis and screening of a molecularly imprinted polymer library targeted for penicillin G, J. Combin. Chem. 2003, 5, 67-72... [Pg.196]

Navarro-Villoslada, F. San Vicente, B. Moreno-Bondi, M. C., Application of multivariate analysis to the screening of molecularly imprinted polymers for bisphenole, Anal. Chim. Acta 2004, 504, 149-162... [Pg.196]

Ramstrom, O., Ye, L., Krook, M., Mosbach, K. Screening of a combinatorial steroid library using molecularly imprinted polymers Anal. Comm., 1998, 35, 9-11... [Pg.390]

El-Toufaili, F.A., Visnjevski, A., Briiggemann, O. Screening combinatorial libraries of molecularly imprinted polymer films casted on membranes in single-use membrane modules J. Chromatogr., B, 2004, 804, 135-139... [Pg.390]

Villoslada, F. N. Takeuchi, T., Multivariate analysis and experimental design in the screening of combinatorial libraries of molecular imprinted polymers, Bull. Chem. Soc. Jpn. 2005, 78, 1354-1361. [Pg.487]

A high-throughput screening technique employing molecularly imprinted polymers as biomimetic selectors... [Pg.80]

Using the above-described automated system, several functional monomers have been screened for the development of molecularly imprinted polymers for the herbicides atrazine and ametryn [54]. According to the results, MAA appears to be more effective for developing the affinity in the atrazine-imprinted polymers. In contrast, 2-(trifluo-romethyl)acrylic acid is more effective for ametryn imprinting. [Pg.108]

Bowman, M. Allender, C. Heard, C. Brain, K. Molecularly imprinted polymers as selective sorbents for the preliminary screening of combinatorial libraries. J. Mater. Sci. and Eng. C-Biomi Mater. Sens. Syst. 1998, 25, 37-43. [Pg.1220]

R. Suedee, T. Srichana, C. Sangpagai, C. Tunthana, and P. Vanichapichat. Development of trichloroacetic acid sensor based on molecularly imprinted polymer membrane for the screening of complex mixture of haloacetic acids in drinking water. Anal. Chim. Acta, 504 89-100,2004. S. Chellam and S.W. Krasner. Disinfection b) roducts relationships and speciation in chlorinated nanofiltered waters. Environ. Sci. Technol., 35 3988-3999, 2001. [Pg.366]


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See also in sourсe #XX -- [ Pg.176 ]

See also in sourсe #XX -- [ Pg.176 ]




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