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Exploring the relationship between nanoscale dynamics and macroscopic rheology in natural polymer gums.
Grein-Iankovski, Aline; Riegel-Vidotti, Izabel C; Simas-Tosin, Fernanda F; Narayanan, Suresh; Leheny, Robert L; Sandy, Alec R.
Afiliación
  • Grein-Iankovski A; X-ray Science Division, Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA. asandy@anl.gov and Grupo de Pesquisa em Macromoléculas e Interfaces, Departamento de Química, Universidade Federal do Paraná (UFPR), CP 19081, CEP 81531-980, Curitiba, PR, Brazil.
  • Riegel-Vidotti IC; Grupo de Pesquisa em Macromoléculas e Interfaces, Departamento de Química, Universidade Federal do Paraná (UFPR), CP 19081, CEP 81531-980, Curitiba, PR, Brazil.
  • Simas-Tosin FF; Grupo de Pesquisa em Macromoléculas e Interfaces, Departamento de Química, Universidade Federal do Paraná (UFPR), CP 19081, CEP 81531-980, Curitiba, PR, Brazil and Instituto de Pesquisa Pelé Pequeno Príncipe, Faculdades Pequeno Príncipe, Curitiba, PR, Brazil.
  • Narayanan S; X-ray Science Division, Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA. asandy@anl.gov.
  • Leheny RL; Department of Physics and Astronomy, Johns Hopkins University, Baltimore, MD 21218, USA.
  • Sandy AR; X-ray Science Division, Advanced Photon Source, Argonne National Laboratory, Lemont, IL 60439, USA. asandy@anl.gov.
Soft Matter ; 12(46): 9321-9329, 2016 Nov 23.
Article en En | MEDLINE | ID: mdl-27805235
ABSTRACT
We report a study connecting the nanoscale and macroscale structure and dynamics of Acacia mearnsii gum as probed by small-angle X-ray scattering (SAXS), X-ray photon correlation spectroscopy (XPCS) and rheology. Acacia gum, in general, is a complex polysaccharide used extensively in industry. Over the analyzed concentration range (15 to 30 wt%) the A. mearnsii gum is found to have a gel-like linear rheology and to exhibit shear thinning flow behavior under steady shear. The gum solutions exhibited a steadily increasing elastic modulus with increasing time after they were prepared and also the emergence of shear thickening events within the shear thinning behavior, characteristic of associative polymers. XPCS measurements using gold nanoparticles as tracers were used to explore the microscopic dynamics within the biopolymer gels and revealed a two-step relaxation process with a partial decay at inaccessibly short times, suggesting caged motion of the nanoparticles, followed by a slow decay at later delay times. Non-diffusive motion evidenced by a compressed exponential line shape and an inverse relationship between relaxation time and wave vector characterizes the slow dynamics of A. mearnsii gum gels. Surprisingly, we have determined that the nanometer-scale mean square displacement of the nanoparticles showed a close relationship to the values predicted from the macroscopic elastic properties of the material, obtained through the rheology experiments. Our results demonstrate the potential applicability of the XPCS technique in the natural polymers field to connect their macroscale properties with their nanoscale structure and dynamics.
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Base de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Soft Matter Año: 2016 Tipo del documento: Article
Buscar en Google
Base de datos: MEDLINE Tipo de estudio: Prognostic_studies Idioma: En Revista: Soft Matter Año: 2016 Tipo del documento: Article