1 |
Unravelling micellar structure and dynamics in an unusually extensive DDAB/bile salt catanionic solution by rheology and NMR-diffusometry Youssry M, Coppola L, Marques EF, Nicotera I Journal of Colloid and Interface Science, 324(1-2), 192, 2008 |
2 |
Chiral capillary electrophoretic separation of amino acids derivatized with 9-fluorenylmethylchloroformate using mixed chiral selectors of beta-cyclodextrin and sodium taurodeoxycholate Chen F, Zhang SF, Qi L, Chen Y Electrophoresis, 27(14), 2896, 2006 |
3 |
Analysis of neutral nitromusks in incenses by capillary electrophoresis in organic solvents and gas chromatography-mass spectrometry Gotti R, Fiori J, Mancini F, Cavrini V Electrophoresis, 26(17), 3325, 2005 |
4 |
Stepwise self-association of penicillin V as deduced by frontal derivative chromatography Funasaki N, Ishikawa S, Neya S Langmuir, 16(13), 5584, 2000 |
5 |
Structure and composition of sodium taurocholate micellar aggregates Bottari E, D'Archivio AA, Festa MR, Galantini L, Giglio E Langmuir, 15(8), 2996, 1999 |
6 |
Fluorescence and NMR studies of the effect of a bile acid dimer on the micellization of bile salts Gouin S, Zhu XX Langmuir, 14(15), 4025, 1998 |
7 |
Aggregation kinetics of sodium deoxycholate in aqueous solution Jover A, Meijide F, Nunez ER, Tato JV Langmuir, 14(16), 4359, 1998 |
8 |
X-ray and quasi-elastic light-scattering studies of sodium deoxycholate D'Archivio AA, Galantini L, Giglio E, Jover A Langmuir, 14(17), 4776, 1998 |
9 |
Helical aggregate formation of cholate salts in poly(N-vinyl-2-pyrrolidinone) gel and its effect on conductivity enhancement Tsutsumi H, Doi H, Oishi T Journal of Power Sources, 68(2), 364, 1997 |
10 |
Aggregation Number for Sodium Deoxycholate from Steady-State and Time-Resolved Fluorescence Jover A, Meijide F, Nunez ER, Tato JV, Mosquera M Langmuir, 13(2), 161, 1997 |