Biomedical Engineering Reference
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179. Koide, T, Ueno, K. 2000. Enantiomeric separations of acidic and neutral compounds by
capillary electrochromatography with β-cyclodextrin-bonded positively charged poly-
acrylamide gels. J High Resol Chromatogr 23: 59-66.
180. Koide, T, Ueno, K. 2001. Enantiomeric separations of primary amino compounds by
capillary electrochromatography with monolithic chiral stationary phases of chiral
crown ether-bonded negatively charged polyacrylamide gels. J Chromatogr A 909:
305-315.
181. Schmid, MG, Grobuschek, N, Lecnik, O, Gubitz, G, Vegvari, A, Hjerten, S. 2001.
Enantioseparation of hydroxy acids on easy-to-prepare continuous beds for capillary
electrochromatography. Electrophoresis 22: 2616-2619.
182. Lecnik, O, Guebitz, G, Schmid, MG. 2003. Role of the charge in continuous beds in the
chiral separation of hydroxy acids by ligand-exchange capillary electrochromatography.
Electrophoresis 24: 2983-2985.
183. Machtejevas, E, Maruska, A. 2002. A new approach to human serum albumin chiral
stationary phase synthesis and its use in capillary liquid chromatography and capillary
electrochromatography. J Sep Sci 25: 1303-1309.
184. Peters, EC, Lewandowski, K, Petro, M, Svec, F, Frechet, JMJ. 1998. Chiral electro-
chromatography with a “molded” rigid monolithic capillary column. Anal Commun 35:
83-86.
185. Laemmerhofer, M, Peters, EC, Yu, C, Svec, F, Frechet, JMJ, Lindner, W. 2000. Chiral
monolithic columns for enantioselective capillary electrochromatography prepared by
copolymerization of a monomer with quinidine functionality. 1. Optimization of polym-
erization conditions, porous properties, and chemistry of the stationary phase. Anal
Chem 72: 4614-4622.
186. Laemmerhofer, M, Svec, F, Frechet, JMJ, Lindner, W. 2000. Chiral monolithic columns
for enantioselective capillary electrochromatography prepared by copolymerization of
a monomer with quinidine functionality. 2. Effect of chromatographic conditions on the
chiral separations. Anal Chem 72: 4623-4628.
187. Lammerhofer, M, Svec, F, Frechet, JMJ, Lindner, W. 2000. Monolithic stationary phases
for enantioselective capillary electrochromatography. J Microcol Sep 12: 597-602.
188. Laemmerhofer, M, Tobler, E, Zarbl, E, Lindner, W, Svec, F, Frechet, JMJ. 2003.
Macroporous monolithic chiral stationary phases for capillary electrochromatography:
New chiral monomer derived from cinchona alkaloid with enhanced enantioselectivity.
Electrophoresis 24: 2986-2999.
189. Pumera, M, Jelinek, I, Jindrich, J, Benada, O. 2002. β-Cyclodextrin-modii ed monolithic
stationary phases for capillary electrochromatography and nano-HPLC chiral analysis
of ephedrine and ibuprofen. J Liq Chromatogr Rel Technol 25: 2473-2484.
190. Lin, J-M, Nakagama, T, Uchiyama, K, Hobo, T. 1997. Capillary electrochromatographic
separation of amino acid enantiomers using on-column prepared molecularly imprinted
polymer. J Pharm Biomed Anal 15: 1351-1358.
191. Schweitz, L, Andersson, LI, Nilsson, S. 1997. Capillary electrochromatography with
molecular imprint-based selectivity for enantiomer separation of local anesthetics.
J Chromatogr A 792: 401-409.
192. Schweitz, L, Andersson, LI, Nilsson, S. 1997. Capillary electrochromatography with
predetermined selectivity obtained through molecular imprinting. Anal Chem 69:
1179-1183.
193. Schweitz, L, Andersson, LI, Nilsson, S. 2001. Rapid electrochromatographic enantiomer
separations on short molecularly imprinted polymer monoliths. Anal Chim Acta 435:
43-47.
194. Schweitz, L, Andersson, LI, Nilsson, S. 2002. Molecularly imprinted CEC sorbents:
investigations into polymer preparation and electrolyte composition. Analyst 127:
22-28.
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