Abstract
High-energy-resolution quasielastic neutron scattering has been used to elucidate the diffusion of water molecules in proximity to single bilayer lipid membranes supported on a silicon substrate. By varying sample temperature, level of hydration, and deuteration, we identify three different types of diffusive water motion: bulk-like, confined, and bound. The motion of bulk-like and confined water molecules is fast compared to those bound to the lipid head groups (7-10 H 2O molecules per lipid), which move on the same nanosecond time scale as H atoms within the lipid molecules. © 2012 Europhysics Letters Association.
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CITATION STYLE
Bai, M., Miskowiec, A., Hansen, F. Y., Taub, H., Jenkins, T., Tyagi, M., … Wang, S. K. (2012). Study of water diffusion on single-supported bilayer lipid membranes by quasielastic neutron scattering. EPL, 98(4). https://doi.org/10.1209/0295-5075/98/48006
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