Oscillatory solvation forces in liquid were studied using off-resonance, low-amplitude, sample-modulation atomic force microscopy (AFM). Experiments were carried out with as-purchased tips and with tips modified by the attachment of 10-μm-sized glass beads on a highly oriented pyrolytic graphite (HOPG) substrate submerged in octamethylcyclotetrasiloxane (OMCTS). The sample-modulation response curves allow us to make a direct measurement of the interaction stiffness (force gradient) as a function of tip−sample distance, and we show how this technique is capable of measuring both repulsive and attractive solvation potentials in a single approach with the correct selection of cantilever stiffness. We calculate the solvation force by integratin...
In this study, we propose a novel surface property measurement technique using noncontact atomic for...
ABSTRACT: The atomic force microscope (AFM) has provided unprecedented opportunities to study veloci...
Fast, accurate, and robust nanomechanical measurements are intensely studied in materials science, a...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
The properties of confined liquids are of fundamental interest for understanding the limitations of ...
We use atomic force microscopy to measure the distance-dependent solvation forces and the dissipatio...
Investigating visco-elastic forces at the nanometer-scale is important to thecharacterization of sof...
The atomic force microscope (AFM) has provided unprecedented opportunities to study velocity-depende...
A new type of AFM is presented which allows for direct measurements of nanomechanical properties in ...
In this thesis we describe Atomic Force Microscopy (AFM) measurements and Molecular Dynamics (MD) si...
A mathematical model is presented to predict the oscillating dynamics of atomic force microscope can...
The measurement of intermolecular forces at the liquid-solid interface is key to many studies of ele...
We demonstrate the existence of a previously unknown damped oscillating signal just after the point ...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
In this study, we propose a novel surface property measurement technique using noncontact atomic for...
ABSTRACT: The atomic force microscope (AFM) has provided unprecedented opportunities to study veloci...
Fast, accurate, and robust nanomechanical measurements are intensely studied in materials science, a...
We determine conservative and dissipative tip–sample interaction forces from the amplitude and phase...
The properties of confined liquids are of fundamental interest for understanding the limitations of ...
We use atomic force microscopy to measure the distance-dependent solvation forces and the dissipatio...
Investigating visco-elastic forces at the nanometer-scale is important to thecharacterization of sof...
The atomic force microscope (AFM) has provided unprecedented opportunities to study velocity-depende...
A new type of AFM is presented which allows for direct measurements of nanomechanical properties in ...
In this thesis we describe Atomic Force Microscopy (AFM) measurements and Molecular Dynamics (MD) si...
A mathematical model is presented to predict the oscillating dynamics of atomic force microscope can...
The measurement of intermolecular forces at the liquid-solid interface is key to many studies of ele...
We demonstrate the existence of a previously unknown damped oscillating signal just after the point ...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
Atomic force microscopy (AFM) can be used to measure surface properties at the nanoscale. However, i...
In this study, we propose a novel surface property measurement technique using noncontact atomic for...
ABSTRACT: The atomic force microscope (AFM) has provided unprecedented opportunities to study veloci...
Fast, accurate, and robust nanomechanical measurements are intensely studied in materials science, a...