Practical HPLC Method Development / Edition 2

Practical HPLC Method Development / Edition 2

ISBN-10:
047100703X
ISBN-13:
9780471007036
Pub. Date:
03/17/1997
Publisher:
Wiley
ISBN-10:
047100703X
ISBN-13:
9780471007036
Pub. Date:
03/17/1997
Publisher:
Wiley
Practical HPLC Method Development / Edition 2

Practical HPLC Method Development / Edition 2

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Overview

This revision brings the reader completely up to date on the evolving methods associated with increasingly more complex sample types analyzed using high-performance liquid chromatography, or HPLC. The book also incorporates updated discussions of many of the fundamental components of HPLC systems and practical issues associated with the use of this analytical method. This edition includes new or expanded treatments of sample preparation, computer assisted method development, as well as biochemical samples, and chiral separations.

Product Details

ISBN-13: 9780471007036
Publisher: Wiley
Publication date: 03/17/1997
Edition description: REV
Pages: 800
Product dimensions: 6.50(w) x 9.50(h) x 1.80(d)

About the Author

Lloyd R. Snyder, PHD, is a Principal at LC Resources in Walnut Creek, California. He is the author or coauthor of several books including An Introduction to Separation Science, Introduction to Modern Liquid Chromatography, Second Edition, and the bestselling Practical HPLC Method Development, Second Edition, all published by Wiley.

Joseph J. Kirkland, PhD, is Vice President of Research and Development for Advanced Materials Technology, Inc., and coauthor of Introduction to Modern Liquid Chromatography, Second Edition, Practical HPLC Method Development, Second Edition, and Modern Size-Exclusion Liquid Chromatography, Second Edition, all published by Wiley.

Joseph L. Glajch is the author of Practical HPLC Method Development, Second Edition, published by Wiley.

Table of Contents

Getting Started.

Basics of Separation.

Detection Sensitivity and Selectivity.

Sample Preparation.

The Column.

Non-Ionic Samples: Reversed- and Normal-Phase HPLC.

Ionic Samples: Reversed-Phase, Ion-Pair, and Ion-Exchange HPLC.

Gradient Elution.

Systematic Approach to the Reversed-Phase Separation of Regular Samples.

Computer-Assisted Method Development.

Biochemical Samples: Proteins, Nucleic Acids, Carbohydrates, and Related Compounds.

Chiral Separations.

Preparative HPLC Separation.

Quantitation (Including Trace Analysis).

Completing the Method: Validation and Transfer.

Appendices.

Index.
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