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C P Palmer

Showing results (1-10 of 18) with videos related to

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Electrophoresis|February 24, 2001
Polymeric and polymer-supported pseudostationary phases in micellar electrokinetic chromatography: performance and selectivityC P Palmer
Electrophoresis|September 28, 1999
Evaluation of polymers based on a silicone backbone as pseudostationary phases for electrokinetic chromatographyT Chen, C P Palmer
Electrophoresis|October 24, 2001
Novel alkyl-modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography: II. Selectivity studied by linear solvation energy relationshipsD S Peterson, C P Palmer
Electrophoresis|May 31, 2001
Synthesis and characterization of novel anionic siloxane polymers as pseudostationary phases for electrokinetic chromatographyD S Peterson, C P Palmer
Journal of Chromatography. A|August 28, 2001
Alkyl modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography. I. Synthesis and characterizationD S Peterson, C P Palmer
Electrophoresis|March 5, 1999
Polymers of sodium-N-undec-10-ene-1-oyl taurate and sodium-N-undec-10-ene-1-oyl aminoethyl-2-phosphonate as pseudostationary phases for electrokinetic chromatographyK T Tellman, C P Palmer
Electrophoresis|September 23, 2000
An anionic siloxane polymer as a pseudostationary phase for electrokinetic chromatographyD S Peterson, C P Palmer
Journal of Chromatography. A|February 24, 2001
Sulfonated acrylamide copolymers as pseudo-stationary phases in electrokinetic chromatographyW Shi, C J Watson, C P Palmer
Journal of Chromatography. A|August 28, 2001
Effect of pendant chain lengths and backbone functionalities on the chemical selectivity of sulfonated amphiphilic copolymers as pseudo-stationary phases in electrokinetic chromatographyW Shi, D S Peterson, C P Palmer
Analytical Chemistry|April 6, 2001
Molecular micelles: novel pseudostationary phases for CES A Shamsi, C P Palmer, I M Warner
Pageof 2

Showing results (1-10 of 18) with videos related to

Sort By:
Pageof 2
Electrophoresis|February 24, 2001
Polymeric and polymer-supported pseudostationary phases in micellar electrokinetic chromatography: performance and selectivityC P Palmer
Electrophoresis|September 28, 1999
Evaluation of polymers based on a silicone backbone as pseudostationary phases for electrokinetic chromatographyT Chen, C P Palmer
Electrophoresis|October 24, 2001
Novel alkyl-modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography: II. Selectivity studied by linear solvation energy relationshipsD S Peterson, C P Palmer
Electrophoresis|May 31, 2001
Synthesis and characterization of novel anionic siloxane polymers as pseudostationary phases for electrokinetic chromatographyD S Peterson, C P Palmer
Journal of Chromatography. A|August 28, 2001
Alkyl modified anionic siloxanes as pseudostationary phases for electrokinetic chromatography. I. Synthesis and characterizationD S Peterson, C P Palmer
Electrophoresis|March 5, 1999
Polymers of sodium-N-undec-10-ene-1-oyl taurate and sodium-N-undec-10-ene-1-oyl aminoethyl-2-phosphonate as pseudostationary phases for electrokinetic chromatographyK T Tellman, C P Palmer
Electrophoresis|September 23, 2000
An anionic siloxane polymer as a pseudostationary phase for electrokinetic chromatographyD S Peterson, C P Palmer
Journal of Chromatography. A|February 24, 2001
Sulfonated acrylamide copolymers as pseudo-stationary phases in electrokinetic chromatographyW Shi, C J Watson, C P Palmer
Journal of Chromatography. A|August 28, 2001
Effect of pendant chain lengths and backbone functionalities on the chemical selectivity of sulfonated amphiphilic copolymers as pseudo-stationary phases in electrokinetic chromatographyW Shi, D S Peterson, C P Palmer
Analytical Chemistry|April 6, 2001
Molecular micelles: novel pseudostationary phases for CES A Shamsi, C P Palmer, I M Warner
Pageof 2