Atomic Force microscope (AFM) cantilevers commonly used for imaging soft biological samples in liquids experience a momentary excitation of the higher eigenmodes at each tap. This transient response is very sensitive to the local sample elasticity under gentle imaging conditions because the higher eigenmode time period is comparable to the tip-sample contact time. By mapping the momentary excitation response, we demonstrate a new scanning probe spectroscopy capable of resolving with high sensitivity the variations in the elasticity of soft biological materials in liquids
Anselmetti D, LÜTHI R, MEYER E, et al. IMAGING OF BIOLOGICAL MATERIALS WITH DYNAMIC FORCE MICROSCOPY...
126 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2010.Since its invention, operatio...
A mathematical model is presented to predict the oscillating dynamics of atomic force microscope can...
Dynamic atomic force microscopy is currently evolving from a single to a multifrequency instrument f...
This thesis investigates four different problems relevant to the dynamics of microcantilevers in liq...
We study the physical origins of phase contrast in dynamic atomic force microscopy (dAFM) in liquids...
Existing force spectroscopy methods in tapping mode atomic force microscopy (AFM) such as higher har...
We perform a comparative study of dynamic force measurements using an Atomic Force Microscope (AFM)...
AbstractDynamic atomic force microscopy is widely used for the imaging of soft biological materials ...
Mapping of the protein structural flexibility with sub-2-nm spatial resolution in liquid is achieved...
We systematically investigate higher harmonics in the vibration spectrum of scanning force microscop...
A canonical assumption in dynamic atomic force microscopy is that the probe tip interacts with the s...
High-resolution imaging of soft biological samples with atomic force microscopy (AFM) is challenging...
Nanoscale morphological characterization and mechanical properties quantification of soft and biolog...
Multifrequency atomic force microscopy imaging has been recently demonstrated as a powerful techniqu...
Anselmetti D, LÜTHI R, MEYER E, et al. IMAGING OF BIOLOGICAL MATERIALS WITH DYNAMIC FORCE MICROSCOPY...
126 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2010.Since its invention, operatio...
A mathematical model is presented to predict the oscillating dynamics of atomic force microscope can...
Dynamic atomic force microscopy is currently evolving from a single to a multifrequency instrument f...
This thesis investigates four different problems relevant to the dynamics of microcantilevers in liq...
We study the physical origins of phase contrast in dynamic atomic force microscopy (dAFM) in liquids...
Existing force spectroscopy methods in tapping mode atomic force microscopy (AFM) such as higher har...
We perform a comparative study of dynamic force measurements using an Atomic Force Microscope (AFM)...
AbstractDynamic atomic force microscopy is widely used for the imaging of soft biological materials ...
Mapping of the protein structural flexibility with sub-2-nm spatial resolution in liquid is achieved...
We systematically investigate higher harmonics in the vibration spectrum of scanning force microscop...
A canonical assumption in dynamic atomic force microscopy is that the probe tip interacts with the s...
High-resolution imaging of soft biological samples with atomic force microscopy (AFM) is challenging...
Nanoscale morphological characterization and mechanical properties quantification of soft and biolog...
Multifrequency atomic force microscopy imaging has been recently demonstrated as a powerful techniqu...
Anselmetti D, LÜTHI R, MEYER E, et al. IMAGING OF BIOLOGICAL MATERIALS WITH DYNAMIC FORCE MICROSCOPY...
126 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2010.Since its invention, operatio...
A mathematical model is presented to predict the oscillating dynamics of atomic force microscope can...