Handbook of HPLC
Herausgeber: Corradini, Danilo
Handbook of HPLC
Herausgeber: Corradini, Danilo
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Now in its second edition, this revised and updated version of the "Handbook of HPLC" examines the new advances made in this field since the publication of the benchmark first edition 12 years ago.
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Now in its second edition, this revised and updated version of the "Handbook of HPLC" examines the new advances made in this field since the publication of the benchmark first edition 12 years ago.
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- 2. Auflage
- Seitenzahl: 716
- Erscheinungstermin: 14. Juli 2010
- Englisch
- Abmessung: 260mm x 183mm x 43mm
- Gewicht: 1520g
- ISBN-13: 9781574445541
- ISBN-10: 1574445545
- Artikelnr.: 21011107
- Verlag: CRC Press
- 2. Auflage
- Seitenzahl: 716
- Erscheinungstermin: 14. Juli 2010
- Englisch
- Abmessung: 260mm x 183mm x 43mm
- Gewicht: 1520g
- ISBN-13: 9781574445541
- ISBN-10: 1574445545
- Artikelnr.: 21011107
Danilo Corradini is research director at the Institute of Chemical Methodologies of the Italian National Research Council (CNR) and a member of the General Scientific Advisory Board of CNR. His involvement in separation science started in 1976 with his research work on chromatography and electrophoresis for his PhD studies in chemistry, which was carried out at Sapienza University of Rome, Italy, under the direction of Michael Lederer, founder and first editor of the Journal of Chromatography. In 1983-1984, he worked with Csaba Horváth, the pioneer of HPLC, at the Department of Chemical Engineering at Yale University, New Haven (USA), where he initiated his first investigations on the HPLC of proteins and peptides. He continued this at the Institute of Chromatography of CNR after he returned to Italy. Currently, he is the head of the chromatography and capillary electrophoresis research unit of the Institute of Chemical Methodologies in Montelibretti, Rome. His research interests are focused on the theoretical and practical aspects of HPLC and capillary electromigration techniques for analytical scale separations of biopolymers, low molecular mass metabolites, and phytochemicals. He has extensively published in international scientific journals, has been chairman and invited speaker in national and international congresses and meetings, and serves on the editorial boards of several journals. He is the chairman of the Interdivisional Group of Separation Science of the Italian Chemical Society and a member of the International Advisory Board of the Mediterranean Separation Science Foundation Research and Training Center in Messina, Italy. In 2009 the Hungarian Separation Science Society assigned him the Csaba Horváth Memorial Award in recognition of his significant contribution to the development, understanding, and propagation of capillary electrophoresis throughout the world and his involvement in the development of separation science in Hungary.
Fundamentals. Monolithic Stationary Phases in HPLC. Bonded Stationary
Phases. Micro-HPLC Chromatography. Two-Dimensional Comprehensive Liquid
Chromatography. Gradient Elution Mode. Capillary Electromigration
Techniques. LC-MS Interfaces: State of the Art and Emerging Techniques.
Control and Effects of Temperature in Analytical HPLC. Nonlinear Liquid
Chromatography. Displacement Chromatography in the Separation and
Characterization of Proteins and Peptides. Field-Flow Fractionation.
Affinity Chromatography. Ion Chromatography: Modes for Metal Ions Analysis.
Retention Models for Ions in HPLC. Polymer HPLC. Applications. HPLC in
Chiral Pharmaceutical.HPLC in Environmental Analysis. HPLC in Food
Analysis. HPLC in Forensic Sciences.
Phases. Micro-HPLC Chromatography. Two-Dimensional Comprehensive Liquid
Chromatography. Gradient Elution Mode. Capillary Electromigration
Techniques. LC-MS Interfaces: State of the Art and Emerging Techniques.
Control and Effects of Temperature in Analytical HPLC. Nonlinear Liquid
Chromatography. Displacement Chromatography in the Separation and
Characterization of Proteins and Peptides. Field-Flow Fractionation.
Affinity Chromatography. Ion Chromatography: Modes for Metal Ions Analysis.
Retention Models for Ions in HPLC. Polymer HPLC. Applications. HPLC in
Chiral Pharmaceutical.HPLC in Environmental Analysis. HPLC in Food
Analysis. HPLC in Forensic Sciences.
Fundamentals. Monolithic Stationary Phases in HPLC. Bonded Stationary
Phases. Micro-HPLC Chromatography. Two-Dimensional Comprehensive Liquid
Chromatography. Gradient Elution Mode. Capillary Electromigration
Techniques. LC-MS Interfaces: State of the Art and Emerging Techniques.
Control and Effects of Temperature in Analytical HPLC. Nonlinear Liquid
Chromatography. Displacement Chromatography in the Separation and
Characterization of Proteins and Peptides. Field-Flow Fractionation.
Affinity Chromatography. Ion Chromatography: Modes for Metal Ions Analysis.
Retention Models for Ions in HPLC. Polymer HPLC. Applications. HPLC in
Chiral Pharmaceutical.HPLC in Environmental Analysis. HPLC in Food
Analysis. HPLC in Forensic Sciences.
Phases. Micro-HPLC Chromatography. Two-Dimensional Comprehensive Liquid
Chromatography. Gradient Elution Mode. Capillary Electromigration
Techniques. LC-MS Interfaces: State of the Art and Emerging Techniques.
Control and Effects of Temperature in Analytical HPLC. Nonlinear Liquid
Chromatography. Displacement Chromatography in the Separation and
Characterization of Proteins and Peptides. Field-Flow Fractionation.
Affinity Chromatography. Ion Chromatography: Modes for Metal Ions Analysis.
Retention Models for Ions in HPLC. Polymer HPLC. Applications. HPLC in
Chiral Pharmaceutical.HPLC in Environmental Analysis. HPLC in Food
Analysis. HPLC in Forensic Sciences.