Chromatography of Polymers: Characterization by SEC and FFF by Theodore ProvderChromatography of Polymers: Characterization by SEC and FFF by Theodore Provder

Chromatography of Polymers: Characterization by SEC and FFF

EditorTheodore Provder

Hardcover | May 1, 1993

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Covers current developments in sedimentation and thermal field flow fractionation for particle size analysis, and characterization of polymer molecular-weight distribution. Presents fundamental studies on critical conditions in liquid chromatography, single-parameter approach to universal SECcalibration, and compositional characterization of polyolefin copolymers as a function of molecular weight and bunching. Provides a strategy for interpreting multidetector size exclusion chromatography (SEC) data. Reviews SEC for cationic, anionic, and nonionic copolymers of vinylpyrrolidone.Presents applications of SEC for the characterization of natural polymer products, cotton, and polysaccharides.
Theodore Provder is Director, Coatings Research Institute, Eastern Michigan University.
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Title:Chromatography of Polymers: Characterization by SEC and FFFFormat:HardcoverDimensions:338 pages, 6.1 × 9.02 × 0.91 inPublished:May 1, 1993Publisher:Oxford University Press

The following ISBNs are associated with this title:

ISBN - 10:0841226253

ISBN - 13:9780841226258

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Table of Contents

R.A. Arlauska, D.R. Burtner, and D.H. Klein: Calibration of a Photosedimentometer Using Sedimentation Field-Flow Fractionation and Gas ChromatographyS.K. Ratanathanawongs and J.C. Giddings: Particle-Size Analysis Using Flow Field-Flow FractionationSeparation and Characterization of Polymeric Latex Beads and Aggregates by Sedimentation Field-Flow FractionationM.N. Myers, P. Chen, and J.C. Giddings: Polymer Separation and Molecular-Weight Distribution by Thermal Field-Flow FractionationM. E. Schimpf, L.M. Wheeler, and P.F. Romeo: Copolymer Retention in Thermal Field-Flow Fractionation: Dependence on Composition and ConformationS. Lee: Gel-Content Determination of Polymers Using Thermal Field-Flow FractionationD. Hunkeler, T. Macko, and D. Berek: Critical Conditions in the Liquid Chromatography of PolymersSingle-Parameter Universal Calibration CurveR.A. Sanayei, K.F. O'Driscoll, and A. RudinR.Cheng and S. Zhao: Specific Refractive Index Increments Determined by Quantitative Size-Exclusion ChromatographyF. Gores and P. Kilz: Copolymer Characterization Using Conventional Size-Exclusion Chromatography and Molar-Mass Sensitive DetectorsS.S. Shetty and L.H. Garcia-Rubio: Size-Exclusion Chromatography and End-Group Analysis of Poly(methyl methacrylate)T.H. Mourey and S.T. Balke: A Strategy for Interpreting Multidetector Size-Exclusion Chromatography Data I: Development of a Systematic ApproachS.T. Balke, R. Thitiratsaakul, R. Lew, P. Cheung, and T.H. Mourey: A Strategy for Interpreting Multidetector Size-Exclusion Chromatography Data II: Applications in Plastic Waste RecoveryJ. Lesec, M. Millequant, and T. Havard: Single-Capillary Viscometer Used for Accurate Determination of Molecular-Weights and Mark-Houwink ConstantsC. Kuo, T. Provder, and M.E. Koehler: Gel Permeation Chromatography--Viscometry: Various Solvent SystemsJ.M. Goldwasser: Absolute Mn Determined by Gel Permeation Chromatography--Differential ViscometryS. Pang and A. Rudin: Size-Exclusion Chromatographic Assessment of Long-Chain Branch Frequency in PolyethylenesR.P. Markovich, L.G. Hazlitt, and L. Smith-Courtney: Gel Permeation Chromatography--Fourier Transform IR Spectroscopy To Characterize Ethylene-Based Polyolefin CopolymersA. Lehtinen and H. Jakosuo-Jansson: Molecular Weight-Determination of Poly (4-methyl-1-pentene)C. Wu, J.F. Curry, and L. Senak: Size-Exclusion Chromatography of Cationic, Nonionic, and Anionic Copolymers of VinylpyrrolidoneJ. D. Timpa: Size-Exclusion Chromatography To Characterize Cotton FiberM.L. Fishman, D.T. Gillespie, and B. Levaj: Structural Analysis of Aggregated Polysaccharides by High-Performance Size-Exclusion Chromatography-Viscometry