We present direct and linear measurements of the normal stiffness and damping of a confined, few molecule thick water layer. The measurements were obtained by use of a small amplitude (0.36 Angstrom), off-resonance atomic force microscopy technique. We measured stiffness and damping oscillations revealing up to seven molecular layers separated by 2.526+/-0.482 Angstrom. Relaxation times could also be calculated and were found to indicate a significant slow-down of the dynamics of the system as the confining separation was reduced. We found that the dynamics of the system is determined not only by the interfacial pressure, but more significantly by solvation effects which depend on the exact separation of tip and surface. The dynamic forces ...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
We investigated the dynamics of nanometer thin water films at controlled ambient humidity adsorbed o...
The penetration resistance of a prototypical model-membrane system (HS-(CH2)(11)-OH self-assembled m...
We present direct and linear measurements of the normal stiffness and damping of a confined, few mol...
In this thesis we describe Atomic Force Microscopy (AFM) measurements and Molecular Dynamics (MD) si...
Mechanical properties of nanoconfined water layers are still poorly understood and continue to creat...
We present atomic force microscopy (AFM) measurements of the conservative oscillatory solvation forc...
The functionality of atomic force microscopy (AFM) and nanomechanical sensing can be enhanced using ...
Despite its ubiquity in living systems, water’s properties and behavior in small, confined spaces su...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
International audienceWe report the observation of a transition in the dynamical properties of water...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
A surface force balance with extremely high sensitivity and resolution for measuring shear forces ac...
We use a displacement-controlled dual double-cantilever-based surface-force-type apparatus to dynami...
Abstract Liquids confined to molecular scales become anisotropic and often show pronounced self-orga...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
We investigated the dynamics of nanometer thin water films at controlled ambient humidity adsorbed o...
The penetration resistance of a prototypical model-membrane system (HS-(CH2)(11)-OH self-assembled m...
We present direct and linear measurements of the normal stiffness and damping of a confined, few mol...
In this thesis we describe Atomic Force Microscopy (AFM) measurements and Molecular Dynamics (MD) si...
Mechanical properties of nanoconfined water layers are still poorly understood and continue to creat...
We present atomic force microscopy (AFM) measurements of the conservative oscillatory solvation forc...
The functionality of atomic force microscopy (AFM) and nanomechanical sensing can be enhanced using ...
Despite its ubiquity in living systems, water’s properties and behavior in small, confined spaces su...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
International audienceWe report the observation of a transition in the dynamical properties of water...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
A surface force balance with extremely high sensitivity and resolution for measuring shear forces ac...
We use a displacement-controlled dual double-cantilever-based surface-force-type apparatus to dynami...
Abstract Liquids confined to molecular scales become anisotropic and often show pronounced self-orga...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
We investigated the dynamics of nanometer thin water films at controlled ambient humidity adsorbed o...
The penetration resistance of a prototypical model-membrane system (HS-(CH2)(11)-OH self-assembled m...