Instrumental Thin-Layer Chromatography

Forfatter: info mangler
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Instrumental Thin-Layer Chromatography, Second Edition offers a comprehensive source of authoritative information on all aspects of instrumental thin-layer chromatography. The use of short, topic-focused chapters facilitates identifying information of immediate interest for familiar or emerging uses of thin-layer chromatography. The book gives those working in both academia and industry the opportunity to learn, refresh, or deepen their understanding of fundamental and instrumental aspects of thin-layer chromatography, as well as the tools to interpret and manage chromatographic data. The book serves as a practical consolidated guide to the selection of separation conditions and the use of auxiliary techniques. This fully updated new edition restores the contemporary character of the book for those involved in advancing the technology, analyzing data produced, or applying the technique to new application areas. Some chapters have been consolidated to make room for topics not covered in the first edition, reflecting general changes in the field of thin-layer chromatography, especially in effects-directed detection, convenient interfaces for advanced spectroscopic detection, and greater automation possibilities. This book is a valuable reference for anyone who needs to acquire fundamental and practical information to facilitate progress in research and management functions utilizing information acquired by thin-layer chromatography.

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  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Screening Drugs Miniaturization History Food Development Dietary supplements Environmental chemistry Estrogens Infrared spectroscopy Mass spectrometry Raman spectroscopy. Theory Bioactive compounds Thin layer chromatography Body fluids Oligosaccharides Carbohydrates Carotenoids Antibiotics Fingerprints Spraying Polycyclic aromatic hydrocarbons Image analysis Densitometry Visualization Antioxidants Resveratrol Fluorescence spectrometry Derivatization Pesticides Natural products NMR OPTIMIZATION Pattern recognition Sugars Polyphenols Drug Discovery Sustainability Food--Quality Sphingolipids Green chemistry multidimensional Detection methods Prediction Intervals Bioactivity Quantitative analysis Botanicals Dipping UV Qualitative analysis Scanner Flavanols Effect-directed Detection Biomarkers Selectivity Staining Effect Directed Analysis Signal Optimization Hyphenation Method validation Data acquisition Environmental contaminants Bioassay Antagonist Planar Chromatography Pharmaceutical formulations Surface analysis Digital camera Détermination Uncertainty of Measurement Micro-Total-Analysis-System Micropollutants SERS High throughput analysis Glycerophospholipids Synergist Tlc Hptlc Agonist Adulterants 2LabsToGo system Accuracy (trueness and precision)Calibration function Active pharmaceutical substances Adulteration of botanicals Ambient pressure ionization AMD applications Antibacterial assay Antipathogenic assay Authentication of botanicals Bioassay-guided isolation Assay of drugs All-in-one system Automated multiple development (AMD)Gradient TLC Chemically bonded layers Antifungal assay Cleaning validation Cellulose layers Developing chambers Classification and regression modeling enzyme inhibition Fingerprinting of botanicals European Pharmacopoeia Hormonal assay Infrared Spectrometry gradients Direct sampling Dosage formulations Drug identification Direct bioautography Kubelka Kinetic Parameters Inorganic oxide layers Fingerprinting analysis Method greenness Multidimensional fingerprints Methylxanthins Mobile Phase Multiple development Heavy metals in botanicals Herbal extracts Orthogonal hyphenation Portable system High-performance TLC (HPTLC)Instrumental TLC Genotoxic assay On-surface assay Pesticides in botanicals Purity assessment Quality control of botanicals Quantification in TLC Radiochromatography scanners Saccharide mapping Sample Cleanup Radioisotope measurements Raman spectrometry Signal preprocessing Solvent strength Sample applicators High-performance thin-layer chromatography (HPTLC)Lean laboratory Solvation Parameter Model Sequence detection HPTLC-MS Scanning densitometers TLC/MS Coupling Indirect sampling Total analytical error Target compounds Tissue extracts Solvent classification Vacuum ionization Mass spectrometry interfaces Planar solid-phase extraction Microfluidic planar separation TLC-MS Retention mechanism Two-dimensional chromatography Thin-layer chromatography (TLC)Thin-layer chromatography–mass spectrometry Ultrathin layers Quantitative TLC Video densitometers Retention mechanisms Validation design

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