Polymer separations under non-conventional conditions have been explored to obtain a separation of long-chain branched polymers from linear polymers with identical hydrodynamic size. In separation media with flow-through channels of the same order as the size of the analyte molecules in solution, the separation and the elution order of polymers are strongly affected by the flow rate. At low flow rates, the largest polymers are eluted last. At high flow rates, they are eluted first. By tuning the channel size and flow rate, conditions can be found where separation becomes independent of molar mass or size of linear polymers. Long-chain branched polymers did experience lower migration rates under these conditions and can be separated from lin...
This PhD thesis is devoted to the study of the conformational behavior of branched polymers in confi...
SEC separates complex branched polymers by hydrodynamic volume, rather than by molecular weight or b...
SEC separates complex branched polymers by hydrodynamic volume, rather than by molecular weight or b...
Branching has a strong influence on the processability and properties of polymers. However, the accu...
DoctorFor the branching analysis of polymers, size exclusion chromatography (SEC) together with vari...
The molar mass distribution (MMD) of synthetic polymers is frequently analyzed by size exclusion chr...
Size-exclusion chromatography (SEC) separates polymers by hydrodynamic volume (the universal calibra...
DoctorChain branching occurs in many commercial polymers and affects their rheological properties an...
Size-exclusion chromatography (SEC) separates polymers by hydrodynamic volume (the universal calibra...
Branched polymers are among the most important polymers, ranging from polyolefins to polysaccharides...
AbstractChromatography which is sensitive to the sizes of macromolecules and to their adsorption ser...
One of the current trends in polymer chemistry is to improve the properties of common polymers in or...
This article presents the SEC analysis of branched polyisobutylene PIB and polystyrene PS with high ...
Detailed knowledge on structural information is required to derive the rheological properties of bra...
Detailed knowledge on structural information is required to derive the rheological properties of bra...
This PhD thesis is devoted to the study of the conformational behavior of branched polymers in confi...
SEC separates complex branched polymers by hydrodynamic volume, rather than by molecular weight or b...
SEC separates complex branched polymers by hydrodynamic volume, rather than by molecular weight or b...
Branching has a strong influence on the processability and properties of polymers. However, the accu...
DoctorFor the branching analysis of polymers, size exclusion chromatography (SEC) together with vari...
The molar mass distribution (MMD) of synthetic polymers is frequently analyzed by size exclusion chr...
Size-exclusion chromatography (SEC) separates polymers by hydrodynamic volume (the universal calibra...
DoctorChain branching occurs in many commercial polymers and affects their rheological properties an...
Size-exclusion chromatography (SEC) separates polymers by hydrodynamic volume (the universal calibra...
Branched polymers are among the most important polymers, ranging from polyolefins to polysaccharides...
AbstractChromatography which is sensitive to the sizes of macromolecules and to their adsorption ser...
One of the current trends in polymer chemistry is to improve the properties of common polymers in or...
This article presents the SEC analysis of branched polyisobutylene PIB and polystyrene PS with high ...
Detailed knowledge on structural information is required to derive the rheological properties of bra...
Detailed knowledge on structural information is required to derive the rheological properties of bra...
This PhD thesis is devoted to the study of the conformational behavior of branched polymers in confi...
SEC separates complex branched polymers by hydrodynamic volume, rather than by molecular weight or b...
SEC separates complex branched polymers by hydrodynamic volume, rather than by molecular weight or b...