A novel method is presented for the rapid direct 3D visualization of the contact between two surfaces by means of fluorescence microscopy using a fluorescent liquid. Distances between the surfaces of up to several hundred nanometers can be determined with subnanometer accuracy in 3D and within seconds of measurement time. The method opens new possibilities for research in the areas of contact mechanics, friction, wear, and lubrication
The atomic force microscope (AFM) allows investigation of the properties of surfaces and interfaces ...
AbstractFluorescence interference-contrast (FLIC) microscopy is a powerful new technique to measure ...
International audienceMicroscopies have become pillars of our characterization tools to observe biol...
International audienceA novel method is presented for the rapid direct 3D visualization of the conta...
This thesis presents two new methods of measurements beyond the diffraction limit using fluorescence...
The area of contact between two objects was detected by using the strong enhancement of the fluoresc...
In this thesis, we develop and characterize a method that enables us to visualize the real microscop...
We describe a novel measurement method to study the contact line of a droplet at nanoscale level. Th...
We discuss here the principles of a novel optical method in which the scanning of a laser spot aroun...
Adhesion is caused by molecular interactions that only take place if the surfaces are in nanoscale c...
It is well-documented that parameters, such as film thickness and temperature in EHL contacts, can b...
The development of techniques to probe interfacial molecular transport is important for understandin...
As mechanical devices scale down to micro/nano length scales, it is crucial to understand friction a...
A near-field optical imaging approach is demonstrated for simultaneous topographic and spectroscopic...
The research in this thesis is dedicated to the development of fluorescent dyes for quantitative ima...
The atomic force microscope (AFM) allows investigation of the properties of surfaces and interfaces ...
AbstractFluorescence interference-contrast (FLIC) microscopy is a powerful new technique to measure ...
International audienceMicroscopies have become pillars of our characterization tools to observe biol...
International audienceA novel method is presented for the rapid direct 3D visualization of the conta...
This thesis presents two new methods of measurements beyond the diffraction limit using fluorescence...
The area of contact between two objects was detected by using the strong enhancement of the fluoresc...
In this thesis, we develop and characterize a method that enables us to visualize the real microscop...
We describe a novel measurement method to study the contact line of a droplet at nanoscale level. Th...
We discuss here the principles of a novel optical method in which the scanning of a laser spot aroun...
Adhesion is caused by molecular interactions that only take place if the surfaces are in nanoscale c...
It is well-documented that parameters, such as film thickness and temperature in EHL contacts, can b...
The development of techniques to probe interfacial molecular transport is important for understandin...
As mechanical devices scale down to micro/nano length scales, it is crucial to understand friction a...
A near-field optical imaging approach is demonstrated for simultaneous topographic and spectroscopic...
The research in this thesis is dedicated to the development of fluorescent dyes for quantitative ima...
The atomic force microscope (AFM) allows investigation of the properties of surfaces and interfaces ...
AbstractFluorescence interference-contrast (FLIC) microscopy is a powerful new technique to measure ...
International audienceMicroscopies have become pillars of our characterization tools to observe biol...