AbstractWe study hydrated model membranes, consisting of stacked bilayers of 1,2-dioleoyl-sn-glycero-3-phosphocholine lipids, using terahertz time-domain spectroscopy and infrared spectroscopy. Terahertz spectroscopy enables the investigation of water dynamics, owing to its sensitivity to dielectric relaxation processes associated with water reorientation. By controlling the number of water molecules per lipid molecule in the system, we elucidate how the interplay between the model membrane and water molecules results in different water dynamics. For decreasing hydration levels, we observe the appearance of new types of water dynamics: the collective bulklike dynamics become less pronounced, whereas an increased amount of both very slowly r...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
We study the influence of the amphipilic compound tetramethylurea (TMU) on the dynamical properties ...
We study the influence of the amphipilic compound tetramethylurea (TMU) on the dynamical properties ...
We study hydrated model membranes, consisting of stacked bilayers of 1,2-dioleoyl-sn-glycero-3-phosp...
AbstractWe study hydrated model membranes, consisting of stacked bilayers of 1,2-dioleoyl-sn-glycero...
Understanding water-membrane interactions is a fundamental issue in biophysics since these interacti...
Biological membranes are highly organized supramolecular assemblies of lipids and proteins. The memb...
We report relaxation dynamics of glycerol-water mixtures as probed by megahertz-to-terahertz dielect...
In order to study the dynamics of a phospholipid and its hydration water, we measured complex dielec...
Click on the DOI link to access the article (may not be free).Gigahertz-to-terahertz spectroscopy of...
Modelling the dynamics of a solution requires a deep comprehension of the aqueous medium. In this w...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
The low-frequency collective vibrational modes in proteins as well as the protein–water interface ha...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
Hydrogen bonding properties of water molecules, which are confined in microcavities of biological in...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
We study the influence of the amphipilic compound tetramethylurea (TMU) on the dynamical properties ...
We study the influence of the amphipilic compound tetramethylurea (TMU) on the dynamical properties ...
We study hydrated model membranes, consisting of stacked bilayers of 1,2-dioleoyl-sn-glycero-3-phosp...
AbstractWe study hydrated model membranes, consisting of stacked bilayers of 1,2-dioleoyl-sn-glycero...
Understanding water-membrane interactions is a fundamental issue in biophysics since these interacti...
Biological membranes are highly organized supramolecular assemblies of lipids and proteins. The memb...
We report relaxation dynamics of glycerol-water mixtures as probed by megahertz-to-terahertz dielect...
In order to study the dynamics of a phospholipid and its hydration water, we measured complex dielec...
Click on the DOI link to access the article (may not be free).Gigahertz-to-terahertz spectroscopy of...
Modelling the dynamics of a solution requires a deep comprehension of the aqueous medium. In this w...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
The low-frequency collective vibrational modes in proteins as well as the protein–water interface ha...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
Hydrogen bonding properties of water molecules, which are confined in microcavities of biological in...
Because it is sensitive to fluctuations occurring over femtoseconds to picoseconds, gigahertz-to-ter...
We study the influence of the amphipilic compound tetramethylurea (TMU) on the dynamical properties ...
We study the influence of the amphipilic compound tetramethylurea (TMU) on the dynamical properties ...