Results 271 to 280 of about 728,967 (344)
Some of the next articles are maybe not open access.
Science, 1988
Electrophoretic separations carried out in capillary tubes offer the possibilities of rapid and automated analyses of small volumes of complex mixtures with unprecedented resolution and sensitivity. Some emerging developments of this new instrumentation are reviewed.
M J, Gordon +3 more
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Electrophoretic separations carried out in capillary tubes offer the possibilities of rapid and automated analyses of small volumes of complex mixtures with unprecedented resolution and sensitivity. Some emerging developments of this new instrumentation are reviewed.
M J, Gordon +3 more
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Some thoughts about enantioseparations in capillary electrophoresis
Electrophoresis, 2019In this overview the goal of the authors was to analyze from the historical perspective the reasons of success and failure of chiral capillary electrophoresis.
S. Fanali, B. Chankvetadze
semanticscholar +1 more source
Fingerprinting Techniques in Food Authentication and Traceability, 2018
Semih Otles, Vasfiye Hazal Ozyurt
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Semih Otles, Vasfiye Hazal Ozyurt
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Open source capillary electrophoresis
Electrophoresis, 2018Open source paradigm is becoming widely accepted in scientific communities and open source hardware is finding its steady place in chemistry research.
P. Kubáň, F. Foret, G. Erny
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Cyclic capillary electrophoresis
ELECTROPHORESIS, 2002A strategy is described here for increasing both the resolution and the flexibility of capillary electrophoresis performed in a sieving medium of ungelled polymer. This strategy is based on analysis and, sometimes, re-analysis that is done in several stages of constant-field electrophoresis. Enhancement-stages are between the analysis-stages.
Gary A, Griess +4 more
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Current Opinion in Biotechnology, 1996
Capillary electorphoresis is rapidly maturing as a major technique for the analysis of proteins, nucleic acids, and glycoconjugates. Recently, efforts have concentrated on the application of its two most powerful ancillary techniques, laser-induced fluorescence detection and mass spectrometry.
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Capillary electorphoresis is rapidly maturing as a major technique for the analysis of proteins, nucleic acids, and glycoconjugates. Recently, efforts have concentrated on the application of its two most powerful ancillary techniques, laser-induced fluorescence detection and mass spectrometry.
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Affinity capillary electrophoresis
ELECTROPHORESIS, 1997AbstractThe application of affinity capillary electrophoresis (ACE) to the study of molecular interactions is reviewed. ACE appears to be a sensitive, versatile and convenient tool to obtain reliable data on binding constants and stoichiometries of interacting systems using the Hummel‐Dreyer method and variants thereof.
G, Rippel +3 more
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Critical reviews in analytical chemistry, 2018
The ionic liquids have special features and, hence, called as liquid electrolytes, ionic melts, ionic glasses, fused salts, liquid salts, ionic fluids, designer solvents, green, and future solvents.
A. Hussain +3 more
semanticscholar +1 more source
The ionic liquids have special features and, hence, called as liquid electrolytes, ionic melts, ionic glasses, fused salts, liquid salts, ionic fluids, designer solvents, green, and future solvents.
A. Hussain +3 more
semanticscholar +1 more source
Forensic capillary electrophoresis
TrAC Trends in Analytical Chemistry, 1996Abstract Capillary electrophoresis (high-performance electrophoresis) has recently become established as a versatile and powerful separation technique. It has a broad applicability and can be used with a variety of detection systems. An introduction is given to this analytical technique, then some applications to forensic problems are discussed.
TAGLIARO, Franco, SMITH FP
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Multidimensional capillary electrophoresis
ELECTROPHORESIS, 2014Multidimensional separation where two or more orthogonal displacement mechanisms are combined is a promising approach to increase peak capacity in CE. The combinations allow dramatic improvement of analytical performance since the total peak capacity is given by a product of the peak capacities of all methods.
Wojciech, Grochocki +2 more
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