By Stepan Podzimek
A complete, sensible method of 3 strong tools of polymer research and characterization
This publication serves as an entire compendium of 3 vital equipment universal for the characterization of artificial and traditional polymers—light scattering, measurement exclusion chromatography (SEC), and uneven circulation box movement fractionation (A4F). that includes quite a few updated examples of experimental effects bought via mild scattering, SEC, and A4F measurements, mild Scattering, measurement Exclusion Chromatography and uneven move box stream Fractionation takes an all-in-one method of carry a whole and thorough rationalization of the rules, theories, and instrumentation had to signify polymers from the perspective in their molar mass distribution, dimension, branching, and aggregation. This complete resource:
Is the one publication accumulating gentle scattering, measurement exclusion chromatography, and uneven stream box move fractionation right into a unmarried text
Systematically compares result of measurement exclusion chromatography with result of uneven circulation box stream fractionation, and the way those tools supplement every one other
Provides in-depth directions for reproducible and proper selection of molar mass and molecular measurement of polymers utilizing SEC or A4F coupled with a multi-angle mild scattering detector
Offers a close evaluation of the technique, detection, and characterization of polymer branching
Light Scattering, measurement Exclusion Chromatography and uneven move box stream Fractionation may be of significant curiosity to all these engaged within the polymer research and characterization in commercial and college study, in addition to in production quality controls laboratories. either newcomers and skilled can expectantly depend on this quantity to verify their very own knowing or to assist interpret their results.
Read or Download Light Scattering, Size Exclusion Chromatography and Asymmetric Flow Field Flow Fractionation: Powerful Tools for the Characterization of Polymers, Proteins and Nanoparticles PDF
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