Abstract
We have performed a detailed analysis of the conformational and segmental dynamics in lipid-based vesicles using quasielastic neutron scattering. Our data evidence the presence of dynamical heterogeneities: the hydrogens in the headgroups and in the initial part of the hydrophobic chains perform slow diffusive motions in a confined volume; those belonging to the end part of the chains show a faster confined diffusivity together with torsional isomerization transitions. A model with three hydrogen populations has been proposed to describe the main features of this complex dynamics. The addition of a charged polysaccharide component to the vesicles mostly slows the dynamics of the headgroups and of the upper part of the acyl chains without significantly affecting the isomerization dynamics. © The Royal Society of Chemistry 2011.
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CITATION STYLE
Gerelli, Y., Sakai, V. G., Ollivier, J., & Deriu, A. (2011). Conformational and segmental dynamics in lipid-based vesicles. Soft Matter, 7(8), 3929–3935. https://doi.org/10.1039/c0sm01301c
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