Preface | p. v |
Contributors | p. xi |
Chromatography: The Separation Technique of the Twentieth Century | p. 1 |
Mikhail Semenovich Tswett: The Father of Modern Chromatography | p. 19 |
From Crushed Bricks to Microchips | p. 27 |
Thin Layer Chromatography | p. 49 |
From Thin Layer Chromatography to High-Performance Thin Layer Chromatography to Planar Chromatography | p. 69 |
The Way It Was | p. 87 |
Gas Chromatography: A Personal Retrospective | p. 101 |
The Evolution of Capillary Column Gas Chromatography: A Historical Overview | p. 115 |
Forty Years in Gas Chromatography | p. 145 |
Liquid Crystal Stationary Phases in Gas Chromatography: A Historic Perspective | p. 157 |
Quantitative Retention-Eluent Composition Relationships in Partition and Adsorption Chromatography | p. 179 |
Hollow Sticks with Mud Inside: The Technology of HPLC Columns | p. 197 |
On the Way to a General Theory of Gradient Elution | p. 211 |
Solvent Selection for Optimal Separation in Liquid Chromatography | p. 231 |
My Life in Separation Sciences: Study of Separation Mechanisms | p. 253 |
Travels of a Chromatographer | p. 265 |
The Role of High-Performance Liquid Chromatography and Capillary Electrophoresis in Life Sciences | p. 277 |
Half a Century in Separation Science | p. 283 |
Development of Countercurrent Chromatography and Other Centrifugal Separation Methods | p. 293 |
Gel Permeation Chromatography/Size Exclusion Chromatography | p. 309 |
From Metal Organic Chemistry to Chromatography and Stereochemistry | p. 327 |
Developments in Surface Chemistry for the Improvement of Chromatographic Methods | p. 349 |
Multimodal Chromatography and Gel Electrophoresis | p. 365 |
Field Flow Fractionation | p. 373 |
The Impact of Analytical Supercritical Fluid Extraction and Supercritical Fluid Chromatography on Separation Science | p. 379 |
Solid Phase Microextraction | p. 399 |
Uppsala School in Separation Science: My Contributions and Some Personal Reflections and Comments | p. 421 |
A Decade of Capillary Electrophoresis | p. 453 |
Electrophoretic Separation-Based Sensors | p. 483 |
High Temperature and Temperature Programming in Pressure-Driven and Electrically Driven Chromatography | p. 505 |
Gradient Elution in Capillary Electrophoresis, Micellar Electrokinetic Chromatography, Capillary Electrochromatography, and Microfluidics | p. 521 |
A History of the Use and Measurement of Affinity Interactions in Electrophoresis | p. 527 |
Direct Enantiomeric Separations in Liquid Chromatography and Gas Chromatography | p. 555 |
Chiral Capillary Electrophoresis | p. 579 |
Whole Column Imaging Detection for Capillary Isoelectric Focusing | p. 589 |
Separation Science in Routine Clinical Analysis | p. 601 |
Moving Microminiaturized Electrophoresis into the Clinical Laboratory | p. 611 |
A Quarter Century of Separation Science, from Paper Chromatography to Capillary Electrophoresis | p. 619 |
A Personal Perspective on Separation Science | p. 631 |
The 1999 Belgian Dioxin Crisis: The Need to Apply State-of-the-Art Analytical Methods | p. 643 |
Research on Separation Methods at the Max Planck Institut Between 1957 and 1995 | p. 653 |
The Secret Memories of a Member of the Blue Finger Society: A Quarter Century in Polymer Chemistry | p. 667 |
Fishing for Molecules in Biological Soup: From Liquid Chromatography/Electrochemistry to Liquid Chromatography/Mass Spectrometry | p. 685 |
Adventures in Analytical Chemistry/Biochemistry/Biotechnology | p. 693 |
A Czech's Life in Separation Science | p. 709 |
Stagnation and Regression Concomitant with the Advances in Electrophoretic Separation Science | p. 721 |
Lab-on-a-Chip: A Twentieth-Century Dream, a Twenty-First-Century Reality | p. 729 |
Selected Readings | p. 741 |
Index | p. 751 |
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