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Electrokinetic Chromatography: Theory, Instrumentation and Applications
 
 
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Electrokinetic Chromatography: Theory, Instrumentation and Applications [Hardcover]

Ute Pyell (Editor)

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Book Description

July 10, 2006 0470871024 978-0470871027 1
This book offers a thorough theoretical description of the method, an overview on the current status of the various forms of electrokinetic capillary chromatography, plus a look forward into future developments.
  • Focuses on the technique of electrokinetic capillary chromatography and its applications in various areas, including pharmaceutical, industrial, environmental, and biological chemistry
  • Features invaluable information put together from experienced researchers in the area
  • First book to discuss this technique in detail
  • Covers a topic that is part of the exploding field of hyphenated techniques
  • Selected international contributors working in research in this area

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Editorial Reviews

Review

"…an excellent reference for those chemists who follow developments in the area of small molecule separations or…separations in EKC." (Journal of the American Chemical Society, January 31, 2007)

From the Back Cover

In the last two decades electrokinetic chromatography (EKC) which can be regarded as an interface between electrophoresis and chromatography has matured into a powerful analytical separation technique with a very large spectrum of applications. This book is designed to be a guide to the large, rapidly growing and diverse field of EKC for a broad audience; those new to EKC, those more experienced, those interested in method development including instrumental developments and those involved with applications research in various fields.

The book aims to bring together a thorough theoretical description of methodological aspects, an overview on the current status of the various forms of EKC, and current and emerging applications, as well as looking forward to future developments. This book should be of interest for all those who need a high-efficiency separation technique with easily adaptable selectivity having the additional features of low sample volume requirements, short run times and high versatility.

The volume is composed of twenty-one chapters organized into three major sections.

(i) Separation Principles including an introduction to the terminology, a review  of electrokinetic methods to investigate the micelle-formation process, an introduction into the fundamentals of the solvation parameter model for the (selectivity) characterisation of separation carriers, a general guide to  method development and resolution optimisation with micellar pseudostationary phases, an introduction to concepts for computer-based rapid method optimization, and reviews on various forms of EKC including microemulsion electrokinetic chromatography (MEEKC), EKC with polymeric pseudostationary phases and dendrimers, EKC with pseudostationary ion-exchange phases and enantioselective EKC. The section closes with a discussion on techniques employed for on-line sample enrichment in combination with EKC

(ii) Instrumentation including the use of coated capillaries, reviews of different detection methods (laser-induced fluorescence detection, amperometric detection, photothermal detection and mass spectrometric detection) having high potential as sensitive and/or selective detection techniques for EKC and concluding with a review of the implementation of EKC on microfluidic devices

(iii) Applications of EKC in the fields of pharmaceutical analysis, the analysis of body fluids, food analysis, enantioselective analysis and environmental analysis.

With this structure the book intends to illuminate many facets of this relatively young member in the family of separation methods, bringing together expert knowledge from various directions which will not only help the novice to estimate how EKC might help in solving analytical tasks, but also assist the more experienced user in broadening and deepening their knowledge of this technique which has already found its way into routine laboratories


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Inside This Book (learn more)
First Sentence:
Electrokinetic chromatography (EKC) is a term that was coined by Terabe and coworkers in 1985 [1,2]. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
electromigration separation techniques, polymeric pseudostationary phases, analysis continuous capillary electrophoresis, normal elution mode, enantiomer migration order, reverse migrating micelles, microemulsion electrokinetic chromatography, amplified sample injection, electroosmotic flow environment, solvation parameter model, capillary electromigration techniques, using micellar electrokinetic chromatography, migration time window, kinetic capillary chromatography, preconcentration strategies, separation electrolyte, thermal lens detection, anionic siloxanes, electrokinetic chromatography with micellar solutions, normal stacking mode, mixed surfactant micelles, pseudo stationary phase, thermal lens detector, lens spectrometry, low conductivity matrix
Key Phrases - Capitalized Phrases (CAPs): (learn more)
John Wiley, American Chemical Society, Electrokinetic Chromatography Edited, Trends Anal, Food Chem, High Res, New York, Analytes Separation, Boca Raton, Microcolumn Sep, Extraction Pollutant Matrix, Matrix Human, Analytes Background, Application Microemulsion, Capillary Electrophoresis Technology, Environmental Protection Agency, Introduction Electrokinetic, Liquid Chromatogr, Marcel Dekker, Mass Spectrom, Perkin Trans, Standardized Pareto, Colloids Surf, Compound Matrix Sample, Compounds Matrix
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