1 |
Electrokinetic-based injection modes for separative microsystems Bias M, Delaunay N, Rocca JL Electrophoresis, 29(1), 20, 2008 |
2 |
Development of an acrylate monolith in a cyclo-olefin copolymer microfluidic device for chip electrochromatography separation Faure K, Albert M, Dugas V, Cretier G, Ferrigno R, Morin P, Rocca JL Electrophoresis, 29(24), 4948, 2008 |
3 |
Electrochromatography in poly(dimethyl)siloxane microchips using organic monolithic stationary phases Faure K, Bias M, Yassine O, Delaunay N, Cretier G, Albert M, Rocca JL Electrophoresis, 28(11), 1668, 2007 |
4 |
Numerical simulations of the second-order electrokinetic bias observed with the gated injection mode in chips Blas M, Delaunay N, Ferrigno R, Rocca JL Electrophoresis, 28(17), 2961, 2007 |
5 |
Comparative study of floating and dynamic injection modes in electrokinetic separative microsystems Blas M, Delaunay N, Rocca JL Electrophoresis, 28(24), 4629, 2007 |
6 |
Hydrodynamic flow and electroosmotic flow in zirconia-packed capillaries de Bellaistre MC, Randon J, Rocca JL Electrophoresis, 27(4), 736, 2006 |
7 |
Electrochromatographic behavior of silica monolithic capillaries of different skeleton sizes synthesized with a simplified and shortened sol-gel procedure Puy G, Demesmay C, Rocca JL, Iapichella J, Galarneau A, Brunel D Electrophoresis, 27(20), 3971, 2006 |
8 |
Development of acrylate-based monolithic stationary phases for electrochromatographic separations Barrioulet MP, Delaunay-Bertoncini N, Demesmay C, Rocca JL Electrophoresis, 26(21), 4104, 2005 |
9 |
Streaming current measurements in zirconia-coated capillaries de Bellaistre MC, Renaud L, Kleinmann P, Morin P, Randon J, Rocca JL Electrophoresis, 25(18-19), 3086, 2004 |
10 |
Development and in situ synthesis of monolithic stationary phases for electrochromatographic separations Delaunay-Bertoncini N, Demesmay C, Rocca JL Electrophoresis, 25(18-19), 3204, 2004 |