We analyze the advantages and drawbacks of a method which measures the viscosity of liquids at microscales, using a thin glass fiber fixed on the tip of a cantilever of an ultra-low-noise Atomic Force Microscope (AFM). When the fiber is dipped into a liquid, the dissipation of the cantilever-fiber system, which is linked to the liquid viscosity, can be computed from the power spectral density of the thermal fluctuations of the cantilever deflection. The high sensitivity of the AFM allows us to show the existence and to develop a model of the coupling between the dynamics of the fiber and that of the cantilever. This model, which accurately fits the experimental data, gives also more insights into the dynamics of coupled microdevices in a vi...
We demonstrate that the thermal response of uncalibrated atomic force microscope cantilevers can be ...
An attempt was made to demonstrate for the first time that the frequency response of microcantilever...
We report the noncontact measurement of the viscoelastic property of polymer thin films in a liquid ...
We analyze the advantages and drawbacks of a method which measures the viscosity of liquids at micro...
International audienceThe description of hydrodynamic interactions between a particle and the surrou...
A dual-mode mechanical resonator using an atomic force microscope (AFM) as a force sensor is develop...
Atomic Force Microscopy (AFM) has become a widely used technique to measure mechanical properties of...
In this letter, we provide evidence that the vibrating resonance frequency of an uncalibrated atomic...
Micro- and nano-scale technologies are enabling scientists to visualize, sense, and measure the worl...
For imaging and manipulation of biological specimens application of atomic force microscopy (AFM) in...
Atomic force microscopy (AFM) is widely used in liquid environments, where true atomic resolution at...
AbstractOperating an Atomic Force Microscopy (AFM) with the cantilever and sample immersed in a liqu...
© 2003 Dr. James Won Min ChonIn the last decade, atomic force microscopy (AFM) has emerged as a fund...
AbstractThe frequency response behavior of Atomic Force Microscopy (AFM) cantilevers in liquids is c...
We demonstrate that the thermal response of uncalibrated atomic force microscope cantilevers can be ...
An attempt was made to demonstrate for the first time that the frequency response of microcantilever...
We report the noncontact measurement of the viscoelastic property of polymer thin films in a liquid ...
We analyze the advantages and drawbacks of a method which measures the viscosity of liquids at micro...
International audienceThe description of hydrodynamic interactions between a particle and the surrou...
A dual-mode mechanical resonator using an atomic force microscope (AFM) as a force sensor is develop...
Atomic Force Microscopy (AFM) has become a widely used technique to measure mechanical properties of...
In this letter, we provide evidence that the vibrating resonance frequency of an uncalibrated atomic...
Micro- and nano-scale technologies are enabling scientists to visualize, sense, and measure the worl...
For imaging and manipulation of biological specimens application of atomic force microscopy (AFM) in...
Atomic force microscopy (AFM) is widely used in liquid environments, where true atomic resolution at...
AbstractOperating an Atomic Force Microscopy (AFM) with the cantilever and sample immersed in a liqu...
© 2003 Dr. James Won Min ChonIn the last decade, atomic force microscopy (AFM) has emerged as a fund...
AbstractThe frequency response behavior of Atomic Force Microscopy (AFM) cantilevers in liquids is c...
We demonstrate that the thermal response of uncalibrated atomic force microscope cantilevers can be ...
An attempt was made to demonstrate for the first time that the frequency response of microcantilever...
We report the noncontact measurement of the viscoelastic property of polymer thin films in a liquid ...