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Artículos de revistas sobre el tema "Pseudostationary phases"

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1

Palmer, Christopher P. "Electrokinetic chromatography with polymeric pseudostationary phases". Journal of Separation Science 31, n.º 5 (marzo de 2008): 783–93. http://dx.doi.org/10.1002/jssc.200700524.

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2

Nilsson, Christian y Staffan Nilsson. "Nanoparticle-based pseudostationary phases in capillary electrochromatography". ELECTROPHORESIS 27, n.º 1 (enero de 2006): 76–83. http://dx.doi.org/10.1002/elps.200500535.

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3

Tanaka, Nobuo, Hironobu Iwasaki, Takeshi Fukutome, Ken Hosoya y Takeo Araki. "Starburst dendrimer-supported pseudostationary phases for electrokinetic chromatography". Journal of High Resolution Chromatography 20, n.º 10 (octubre de 1997): 529–38. http://dx.doi.org/10.1002/jhrc.1240201004.

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4

Shamsi, Shahab A., Christopher P. Palmer y Isiah M. Warner. "Peer Reviewed: Molecular Micelles: Novel Pseudostationary Phases for CE". Analytical Chemistry 73, n.º 5 (marzo de 2001): 140 A—149 A. http://dx.doi.org/10.1021/ac012412b.

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5

PUMERA, M., J. WANG, E. GRUSHKA y O. LEV. "Organically modified sols as pseudostationary phases for microchip electrophoresis". Talanta 72, n.º 2 (30 de abril de 2007): 711–15. http://dx.doi.org/10.1016/j.talanta.2006.11.043.

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6

Baechmann, Knut, Alexis Bazzanella, Ingo Haag, Kwang-Yong Han, Ralf Arnecke, Volker Boehmer y Walter Vogt. "Resorcarenes as pseudostationary phases with selectivity for electrokinetic chromatography". Analytical Chemistry 67, n.º 10 (15 de mayo de 1995): 1722–26. http://dx.doi.org/10.1021/ac00106a012.

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7

Rauk, Erika, Anton Kotzev, André Laschewsky y Christopher P. Palmer. "Cationic and perfluorinated polymeric pseudostationary phases for electrokinetic chromatography". Journal of Chromatography A 1106, n.º 1-2 (febrero de 2006): 29–35. http://dx.doi.org/10.1016/j.chroma.2005.07.114.

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8

Kopecká, Kateřina, Eva Tesašová, Andrei Pirogov y Bohuslav Gaš. "Ionenes acting as pseudostationary phases in capillary electrokinetic chromatography". Journal of Separation Science 25, n.º 15-17 (1 de noviembre de 2002): 1027–34. http://dx.doi.org/10.1002/1615-9314(20021101)25:15/17<1027::aid-jssc1027>3.0.co;2-m.

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9

Schulte, Shannon y Christopher P. Palmer. "Alkyl-modified siloxanes as pseudostationary phases for electrokinetic chromatography". ELECTROPHORESIS 24, n.º 6 (marzo de 2003): 978–83. http://dx.doi.org/10.1002/elps.200390141.

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10

Peterson, Dominic S. y Christopher P. Palmer. "Alkyl modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography". Journal of Chromatography A 924, n.º 1-2 (julio de 2001): 103–10. http://dx.doi.org/10.1016/s0021-9673(01)00759-2.

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11

Shi, Wei y Christopher P. Palmer. "High-speed separations by electrokinetic chromatography using polymeric pseudostationary phases". Journal of Separation Science 25, n.º 8 (1 de junio de 2002): 543–46. http://dx.doi.org/10.1002/1615-9314(20020601)25:8<543::aid-jssc543>3.0.co;2-#.

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12

Peterson, Dominic S. y Christopher P. Palmer. "Novel alkyl-modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography". Journal of Chromatography A 959, n.º 1-2 (junio de 2002): 255–61. http://dx.doi.org/10.1016/s0021-9673(02)00442-9.

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13

Nilsson, Christian, Staffan Birnbaum y Staffan Nilsson. "Nanoparticle-based pseudostationary phases in CEC: A breakthrough in protein analysis?" ELECTROPHORESIS 32, n.º 10 (18 de abril de 2011): 1141–47. http://dx.doi.org/10.1002/elps.201000645.

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14

Fuguet, Elisabet, Clara Ràfols, Elisabeth Bosch, Michael H. Abraham y Martí Rosés. "Selectivity of single, mixed, and modified pseudostationary phases in electrokinetic chromatography". ELECTROPHORESIS 27, n.º 10 (mayo de 2006): 1900–1914. http://dx.doi.org/10.1002/elps.200500464.

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15

Palmer, Christopher P. y Shigeru Terabe. "Micelle Polymers as Pseudostationary Phases in MEKC: Chromatographic Performance and Chemical Selectivity". Analytical Chemistry 69, n.º 10 (mayo de 1997): 1852–60. http://dx.doi.org/10.1021/ac960801d.

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16

Zakaria, Philip, Miroslav Macka y Paul R. Haddad. "Electrokinetic Chromatography Utilizing Two Pseudostationary Phases Providing Ion-Exchange and Hydrophobic Interactions". Analytical Chemistry 74, n.º 6 (marzo de 2002): 1241–48. http://dx.doi.org/10.1021/ac0109016.

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17

Tickle, David C., George N. Okafo, Patrick Camilleri, Rose F. D. Jones y Anthony J. Kirby. "Glucopyranoside-Based Surfactants as Pseudostationary Phases for Chiral Separations in Capillary Electrophoresis". Analytical Chemistry 66, n.º 23 (diciembre de 1994): 4121–26. http://dx.doi.org/10.1021/ac00095a002.

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18

Bazzanella, Alexis, Knut Bächmann, Robert Milbradt, Volker Böhmer y Walter Vogt. "Discontinuous electrokinetic chromatography of parabens using different substituted resonances as pseudostationary phases". Electrophoresis 20, n.º 1 (1 de enero de 1999): 92–99. http://dx.doi.org/10.1002/(sici)1522-2683(19990101)20:1<92::aid-elps92>3.0.co;2-4.

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19

Takeda, Yuto, Yuka Hayashi, Naonori Utamura, Chise Takamoto, Mitsuhiro Kinoshita, Sachio Yamamoto, Takao Hayakawa y Shigeo Suzuki. "Capillary electrochromatography using monoamine- and triamine-bonded silica nanoparticles as pseudostationary phases". Journal of Chromatography A 1427 (enero de 2016): 170–76. http://dx.doi.org/10.1016/j.chroma.2015.11.085.

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20

Terabe, Shigeru, Hiroto Ozaki y Yoshihide Tanaka. "New Pseudostationary Phases for Electrokinetic Chromatography: A High-Molecular Surfactant and Proteins". Journal of the Chinese Chemical Society 41, n.º 3 (junio de 1994): 251–57. http://dx.doi.org/10.1002/jccs.199400036.

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21

Maichel, Beate y Ernst Kenndler. "Recent innovation in capillary electrokinetic chromatography with replaceable charged pseudostationary phases or additives". Electrophoresis 21, n.º 15 (1 de septiembre de 2000): 3160–73. http://dx.doi.org/10.1002/1522-2683(20000901)21:15<3160::aid-elps3160>3.0.co;2-v.

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22

Palmer, Christopher P. "Polymeric and polymer-supported pseudostationary phases in micellar electrokinetic chromatography: Performance and selectivity". Electrophoresis 21, n.º 18 (diciembre de 2000): 4054–72. http://dx.doi.org/10.1002/1522-2683(200012)21:18<4054::aid-elps4054>3.0.co;2-f.

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23

Castagnola, Massimo, Cecilia Zuppi, Diana V. Rossetti, Federica Vincenzoni, Alessandro Lupi, Alberto Vitali, Elisabetta Meucci y Irene Messana. "Characterization of dendrimer properties by capillary electrophoresis and their use as pseudostationary phases". ELECTROPHORESIS 23, n.º 12 (junio de 2002): 1769. http://dx.doi.org/10.1002/1522-2683(200206)23:12<1769::aid-elps1769>3.0.co;2-i.

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24

Perič, Iván y Ernst Kenndler. "Recent developments in capillary electrokinetic chromatography with replaceable charged pseudostationary phases or additives". ELECTROPHORESIS 24, n.º 17 (septiembre de 2003): 2924–34. http://dx.doi.org/10.1002/elps.200305573.

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25

Palmer, Christopher P. "Recent progress in the use of ionic polymers as pseudostationary phases for EKC". ELECTROPHORESIS 28, n.º 1-2 (enero de 2007): 164–73. http://dx.doi.org/10.1002/elps.200600448.

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26

Gao, Jingjie, Nurgul Latep, Ying Ge, Jing Tian, Jingqing Wu y Weidong Qin. "Polyamidoamine-grafted silica nanoparticles as pseudostationary phases for capillary electrochromatographic separation of proteins". Journal of Separation Science 36, n.º 9-10 (18 de abril de 2013): 1575–81. http://dx.doi.org/10.1002/jssc.201200837.

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27

Khaledi, Morteza G., Jefferson G. Bumgarner y Mohammadreza Hadjmohammadi. "Characterization of mixed micellar pseudostationary phases in electrokinetic chromatography using linear solvation energy relationships". Journal of Chromatography A 802, n.º 1 (abril de 1998): 35–47. http://dx.doi.org/10.1016/s0021-9673(97)01157-6.

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28

Moliner-Martínez, Y., M. Barrios, S. Cárdenas y M. Valcárcel. "Comparative study of carbon nanotubes and C60 fullerenes as pseudostationary phases in electrokinetic chromatography". Journal of Chromatography A 1194, n.º 1 (junio de 2008): 128–33. http://dx.doi.org/10.1016/j.chroma.2008.04.034.

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29

Chen, Ting y Christopher P. Palmer. "Evaluation of polymers based on a silicone backbone as pseudostationary phases for electrokinetic chromatography". Electrophoresis 20, n.º 12 (1 de agosto de 1999): 2412–19. http://dx.doi.org/10.1002/(sici)1522-2683(19990801)20:12<2412::aid-elps2412>3.0.co;2-f.

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30

Peterson, Dominic S. y Christopher P. Palmer. "Synthesis and characterization of novel anionic siloxane polymers as pseudostationary phases for electrokinetic chromatography". ELECTROPHORESIS 22, n.º 7 (mayo de 2001): 1314–21. http://dx.doi.org/10.1002/1522-2683(200105)22:7<1314::aid-elps1314>3.0.co;2-u.

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31

Fujimoto, Chuzo. "Application of linear solvation energy relationships to polymeric pseudostationary phases in micellar electrokinetic chromatography". ELECTROPHORESIS 22, n.º 7 (mayo de 2001): 1322–29. http://dx.doi.org/10.1002/1522-2683(200105)22:7<1322::aid-elps1322>3.0.co;2-3.

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32

Palmer, Christopher P. "Recent progress in the use of ionic polymers as pseudostationary phases for electrokinetic chromatography". ELECTROPHORESIS 30, n.º 1 (enero de 2009): 163–68. http://dx.doi.org/10.1002/elps.200800420.

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33

Pascoe, Robert J. y Joe P. Foley. "Characterization of surfactant and phospholipid vesicles for use as pseudostationary phases in electrokinetic chromatography". ELECTROPHORESIS 24, n.º 24 (diciembre de 2003): 4227–40. http://dx.doi.org/10.1002/elps.200305655.

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34

Bazzanella, Alexis, Hagen Mörbel, Knut Bächmann, Robert Milbradt, Volker Böhmer y Walter Vogt. "Highly efficient separation of amines by electrokinetic chromatography using resorcarene-octacarboxylic acids as pseudostationary phases". Journal of Chromatography A 792, n.º 1-2 (diciembre de 1997): 143–49. http://dx.doi.org/10.1016/s0021-9673(97)00799-1.

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35

Tanaka, Nobuo, Katsuhito Nakagawa, Ken Hosoya, Christopher P. Palmer y Shigeru Kunugi. "Control of migration time window and selectivity in electrokinetic chromatography with mixed polymeric pseudostationary phases". Journal of Chromatography A 802, n.º 1 (abril de 1998): 23–33. http://dx.doi.org/10.1016/s0021-9673(97)01090-x.

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36

Palmer, Christopher P. y Jonathan P. McCarney. "Recent progress in the use of soluble ionic polymers as pseudostationary phases for electrokinetic chromatography". ELECTROPHORESIS 25, n.º 23-24 (diciembre de 2004): 4086–94. http://dx.doi.org/10.1002/elps.200406110.

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37

Amundsen, Lotta K. y Heli Sirén. "Partial filling micellar electrokinetic chromatography analysis of androgens and testosterone derivatives using two sequential pseudostationary phases". Journal of Chromatography A 1131, n.º 1-2 (octubre de 2006): 267–74. http://dx.doi.org/10.1016/j.chroma.2006.07.023.

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38

Akbay, Cevdet, Yatzka Hoyos, Edward Hooper, Hakan Arslan y Syed A. A. Rizvi. "Cationic gemini surfactants as pseudostationary phases in micellar electrokinetic chromatography. Part I: Effect of head group". Journal of Chromatography A 1217, n.º 32 (agosto de 2010): 5279–87. http://dx.doi.org/10.1016/j.chroma.2010.05.055.

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39

Muijselaar, Pim G., Henk A. Claessens y Carel A. Cramers. "Characterization of Pseudostationary Phases in Micellar Electrokinetic Chromatography by Applying Linear Solvation Energy Relationships and Retention Indexes". Analytical Chemistry 69, n.º 6 (marzo de 1997): 1184–91. http://dx.doi.org/10.1021/ac960381s.

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40

Schulte, Shannon, Anup K. Singh, Erika Rauk y Christopher P. Palmer. "Performance and selectivity of polymeric pseudostationary phases for the electrokinetic separation of amino acid derivatives and peptides". Analytical and Bioanalytical Chemistry 382, n.º 3 (15 de marzo de 2005): 777–82. http://dx.doi.org/10.1007/s00216-005-3131-6.

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41

Liu, Yi, Lorena L. Sombra y Patricia W. Stege. "Enantiomeric separation of β-blockers and tryptophan using heparin as stationary and pseudostationary phases in capillary electrophoresis". Chirality 30, n.º 8 (25 de junio de 2018): 988–95. http://dx.doi.org/10.1002/chir.22972.

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42

Zhao, Ting, Guanglian Zhou, Yuanhong Wu, Xiumei Liu y Fengshan Wang. "Gold nanomaterials based pseudostationary phases in capillary electrophoresis: A brand-new attempt at chondroitin sulfate isomers separation". ELECTROPHORESIS 36, n.º 4 (28 de enero de 2015): 588–95. http://dx.doi.org/10.1002/elps.201400440.

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43

Akbay, Cevdet, Jepkoech Tarus, Nicole L. Gill, Rezik A. Agbaria y Isiah M. Warner. "Novel anionic copolymerized surfactants of mixed achiral and chiral surfactants as pseudostationary phases for micellar electrokinetic chromatography". ELECTROPHORESIS 25, n.º 45 (febrero de 2004): 758–65. http://dx.doi.org/10.1002/elps.200305712.

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44

Mertzman, Melissa D y Joe P Foley. "Comparison of dodecoxycarbonylvaline microemulsion, solvent-modified micellar and micellar pseudostationary phases for the chiral analysis of pharmaceutical compounds". ELECTROPHORESIS 26, n.º 21 (noviembre de 2005): 4153–63. http://dx.doi.org/10.1002/elps.200500351.

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45

Mertzman, Melissa D y Joe P Foley. "Comparison of dodecoxycarbonylvaline microemulsion, solvent-modified micellar and micellar pseudostationary phases for the chiral analysis of pharmaceutical compounds". ELECTROPHORESIS 26, n.º 24 (diciembre de 2005): 4781. http://dx.doi.org/10.1002/elps.200590079.

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46

Sun, Xiaodong, Tao Yu, Guangfu Xu, Yingxiang Du, Jiaquan Chen y Xiaoqi Li. "Evaluation of the enantioselectivity of capillary electrokinetic chromatography using ethanediamine-bonded poly (glycidyl methacrylate) microspheres as the pseudostationary phases". Chirality 31, n.º 2 (4 de enero de 2019): 118–26. http://dx.doi.org/10.1002/chir.23035.

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47

Peterson, Dominic S. y Christopher P. Palmer. "Novel alkyl-modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography: II. Selectivity studied by linear solvation energy relationships". ELECTROPHORESIS 22, n.º 16 (septiembre de 2001): 3562–66. http://dx.doi.org/10.1002/1522-2683(200109)22:16<3562::aid-elps3562>3.0.co;2-s.

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48

Lucangioli, Silvia E., Clyde N. Carducci, Silvia L. Scioscia, Adriana Carlucci, Carlos Bregni y Ernst Kenndler. "Comparison of the retention characteristics of different pseudostationary phases for microemulsion and micellar electrokinetic chromatography of betamethasone and derivatives". ELECTROPHORESIS 24, n.º 6 (marzo de 2003): 984–91. http://dx.doi.org/10.1002/elps.200390142.

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49

Terabe, Shigeru, Michal J. Markuszewski, Naoko Inoue, Koji Otsuka y Takaaki Nishioka. "Capillary electrophoretic techniques toward the metabolome analysis". Pure and Applied Chemistry 73, n.º 10 (1 de octubre de 2001): 1563–72. http://dx.doi.org/10.1351/pac200173101563.

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Resumen
Metabolome analysis is a systematic chemical analysis of metabolites, which may be used to investigate the metabolic activity in the cell. Capillary electrophoresis (CE) is one of the most promising techniques for the metabolome analysis, because it gives high-resolution separations in a reasonable time and requires a minimum amount of samples. General characteristics of CE are discussed from the viewpoint of metabolome analysis. Micellar electrokinetic chromatography (MEKC), a separation mode of CE, enables the separation of neutral analytes by using micelles as pseudostationary phases. MEKC is also powerful for the separation of ionic analytes to improve selectivity. To solve relatively poor concentration sensitivity with UV absorbance detection, on-line sample preconcentration techniques were developed resulting in up to few thousand-fold increases in sensitivity. Laser-induced fluorescence detection is another solution to increase concentration sensitivity, but most analytes are not natively fluorescent. Therefore, several derivatization reactions were performed to selectively detect a class of analytes with high sensitivity. Some preliminary results are shown with formic acid extracts of Bacillus subtilis.
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50

Tran, Nguyet Thuy, Myriam Taverna, Frantz S. Deschamps, Philippe Morin y Danielle Ferrier. "Investigation of micelles and anionic cyclodextrins as pseudostationary phases for the capillary electrophoresis separation of oligosaccharides derivatized with 2-aminobenzamide". Electrophoresis 19, n.º 15 (noviembre de 1998): 2630–38. http://dx.doi.org/10.1002/elps.1150191511.

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