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Volumn 22, Issue 16, 2001, Pages 3438-3443
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Migration mechanism of bases and nucleosides in oil-in-water microemulsion capillary electrophoresis
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Author keywords
Bases; Capillary zone electrophoresis; Electrophoretic mobility; Microemulsion electrokinetic chromatography; Nucleosides
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Indexed keywords
BIOMOLECULES;
CAPILLARY ELECTROPHORESIS;
DISSOCIATION;
ELECTRODYNAMICS;
LIQUID CHROMATOGRAPHY;
MICROEMULSIONS;
SODIUM DODECYL SULFATE;
SULFUR COMPOUNDS;
1-BUTANOL;
BASE;
BUFFER PH;
CAPILLARY-ZONE ELECTROPHORESIS;
ELECTROPHORETIC BEHAVIOR;
MICROEMULSION ELECTROKINETIC CHROMATOGRAPHY;
MICROEMULSION SYSTEMS;
NUCLEOSIDE;
OIL-IN-WATER MICROEMULSIONS;
SODIUM DODECYL SULPHATE;
ELECTROPHORETIC MOBILITY;
ADENINE;
ADENOSINE;
ANION;
BASE;
BUFFER;
BUTANOL;
CYTIDINE;
CYTOSINE;
DODECYL SULFATE SODIUM;
GUANINE;
GUANOSINE;
HEPTANE;
NUCLEOSIDE;
PHOSPHATE;
THYMIDINE;
THYMINE;
URACIL;
URIDINE;
WATER OIL CREAM;
ADSORPTION;
ARTICLE;
CAPILLARY ELECTROPHORESIS;
CAPILLARY ZONE ELECTROPHORESIS;
CONTROLLED STUDY;
CORRELATION FUNCTION;
DISSOCIATION CONSTANT;
ELECTROPHORETIC MOBILITY;
INTERMETHOD COMPARISON;
MICELLAR ELECTROKINETIC CHROMATOGRAPHY;
MICROEMULSION;
PH;
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EID: 0034786717
PISSN: 01730835
EISSN: None
Source Type: Journal
DOI: 10.1002/1522-2683(200109)22:16<3438::AID-ELPS3438>3.0.CO;2-4 Document Type: Article |
Times cited : (26)
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References (27)
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