2004Journal of Applied Polymer ScienceRequires access

Laser light‐scattering molecular weight analysis of a poly(fluoro acrylate)

Andrew Meyer, Nick Jones, Scott Lyle, Shiv Venkataramani, John C. Clark, David E. Kranbuehl

Open publisher page 5 citations

Abstract

Abstract Two leading macromolecular characterization techniques were employed for analysis of a unique, difficult to dissolve fluorinated polymer system (PFA), Poly(N‐methyl perfluoroocytyl sulfonamido ethyl acrylate). Multiangle Laser Light Scattering (MALLS) and Viscosity–Right Angle Laser Light Scattering (RALLS) were used to measure the weight‐average molecular weight and molecular size‐radius using the solvent HFIP, 1,1,1,3,3,3‐hexafluoroisopropanol. HFIP is shown to be an excellent solvent for light scattering measurements on the PFA as well as on Polyamide‐11 and Polymethyl methacrylate. It is shown that the Viscosity‐RALLS approach gives results that differ from the MALLS system due to the assumptions used. It is also shown that the addition of salt does affect the molecular weight dependence of the radius of gyration but not the value of Mw. © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 91: 3447–3454, 2004

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Abstract Two leading macromolecular characterization techniques were employed for analysis of a unique, difficult to dissolve fluorinated polymer system (PFA), Poly(N‐methyl perfluoroocytyl sulfonamido ethyl acrylate). Multiangle Laser Light Scattering (MALLS) and Viscosity–Right Angle Laser Light Scattering (RALLS) were used to measure the weight‐average molecular weight and molecular size‐radius using the solvent HFIP, 1,1,1,3,3,3‐hexafluoroisopropanol. HFIP is shown to be an excellent solvent for light scattering measurements on the PFA as well as on Polyamide‐11 and Polymethyl methacrylate. It is shown that the Viscosity‐RALLS approach gives results that differ from the MALLS system due to the assumptions used. It is also shown that the addition of salt does affect the molecular weight dependence of the radius of gyration but not the value of Mw. © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 91: 3447–3454, 2004

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Available abstract

Abstract Two leading macromolecular characterization techniques were employed for analysis of a unique, difficult to dissolve fluorinated polymer system (PFA), Poly(N‐methyl perfluoroocytyl sulfonamido ethyl acrylate). Multiangle Laser Light Scattering (MALLS) and Viscosity–Right Angle Laser Light Scattering (RALLS) were used to measure the weight‐average molecular weight and molecular size‐radius using the solvent HFIP, 1,1,1,3,3,3‐hexafluoroisopropanol. HFIP is shown to be an excellent solvent for light scattering measurements on the PFA as well as on Polyamide‐11 and Polymethyl methacrylate. It is shown that the Viscosity‐RALLS approach gives results that differ from the MALLS system due to the assumptions used. It is also shown that the addition of salt does affect the molecular weight dependence of the radius of gyration but not the value of Mw. © 2004 Wiley Periodicals, Inc. J Appl Polym Sci 91: 3447–3454, 2004

Key concepts: Radius of gyration, Static light scattering, Multiangle light scattering, Light scattering, Polymer chemistry, Hydrodynamic radius, Intrinsic viscosity, Solvent

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