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Light scattering size exclusion chromatography

Table 5. Molecular Characterization of the PBPEM Macroinitiators and the Corresponding PBA Brushes by Multiangle Laser Light Scattering Size Exclusion Chromatography (MALLS—SEC) and Static Light Scattering (SLS)168... Table 5. Molecular Characterization of the PBPEM Macroinitiators and the Corresponding PBA Brushes by Multiangle Laser Light Scattering Size Exclusion Chromatography (MALLS—SEC) and Static Light Scattering (SLS)168...
Podzimek S (2011) Light scattering, size exclusion chromatography and asymmetric flow fleld flow fractionation. Wiley, Hoboken... [Pg.140]

Samples from size-exclusion chromatography/low angle laser light scattering (sec/laUs). [Pg.518]

Size exclusion chromatography coupled to static light scattering (SEC-MALLs) Molecular weight, molecular weight distribution. Polydispersity. Radius of gyration and distribution solution conformation and flexibility. Method of choice for moleciflar weight work. [4]... [Pg.213]

Meyer M., Morgenstern B. 2003. Characterization of Gelatine and Acid Soluble Collagen by Size Exclusion Chromatography Coupled with Multi Angle Light Scattering (SEC-MALS). Biomacromolecules 4,1727-1732. [Pg.114]

Characterization of Branched Polymers by Size Exclusion Chromatography with Light Scattering Detection... [Pg.107]

Porsch, B. and Sundelof, L.- O., Size-exclusion chromatography and dynamic light-scattering of dextrans in water explanation of ion-exclusion behaviour, /. Chromatogr., 669, 21, 1994. [Pg.362]

Lederer, K., Imrich-Schwarz, G., and Dunky, M., Simultaneous calibration of separation and axial dispersion in size exclusion chromatography coupled with light-scattering, J. Appl. Polym. Sci., 32, 4751, 1986. [Pg.369]

Wu, C., Simultaneous calibration of size exclusion chromatography and dynamic light-scattering for the characterization of gelatin, Macromolecules, 26, 5423, 1993. [Pg.371]

Mourey, T. H. and Coll, H., Size exclusion chromatography with two-angle laser light-scattering (SEC-TALLS) of high-molecular-weight and branched polymers, /. Appl. Polym. Sci., 56, 65, 1995. [Pg.371]

Yu, L.P. and Rollings, J. E., Quantitative branching of linear and branched polysaccharide mixtures by size exclusion chromatography and on-line low-angle laser light-scattering detection, /. Appl. Polym. Sci., 35, 1085, 1988. [Pg.371]

Beri, R. G., Walker, J., Reese, E. T., and Rollings, J. E., Characterization of chitosans via coupled size-exclusion chromatography and multiple-angle laser light-scattering techniques, Carb. Res., 238, 11, 1993. [Pg.371]

We report here the results of our recent studies of poly(alkyl/arylphosphazenes) with particular emphasis on the following areas (1) the overall scope of, and recent improvements in, the condensation polymerization method (2) the characterization of a representative series of these polymers by dilute solution techniques (viscosity, membrane osmometry, light scattering, and size exclusion chromatography), thermal analysis (TGA and DSC), NMR spectroscopy, and X-ray diffraction (3) the preparation and preliminary thermolysis reactions of new, functionalized phosphoranimine monomers and (4) the mechanism of the polymerization reaction. [Pg.284]

Detection in 2DLC is the same as encountered in one-dimensional HPLC. A variety of detectors are presented in Table 5.2. The choice of detector is dependent on the molecule being detected, the problem being solved, and the separation mode used for the second dimension. If MS detection is utilized, then volatile buffers are typically used in the second-dimension separation. Ultraviolet detection is used for peptides, proteins, and any molecules that contain an appropriate chromophore. Evaporative light scattering detection has become popular for the analysis of polymers and surfactants that do not contain UV chromophores. Refractive index (RI) detection is generally used with size exclusion chromatography for the analysis of polymers. [Pg.109]

Chen, J., Radke, W., Pasch, H. (2002). Analysis of polyamides by size exclusion chromatography and laser light scattering. Macromol. Symp. 193, 107. [Pg.420]


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