Atomic force microscopy (AFM) can characterize nanomaterial elasticity. However, some one-dimensional nanomaterials, such as DNA, are too small to locate with an AFM tip because of thermal drift and the nonlinearity of piezoelectric actuators. In this study, we propose a novel approach to address the shortcomings of AFM and obtain the radial Young’s modulus of a DNA duplex. The elastic properties are evaluated by combining physical calculations and measured experimental results. The initial elasticity of the DNA is first assumed; based on tapping-mode scanning images and tip–sample interaction force simulations, the calculated elastic modulus is extracted. By minimizing the error between the assumed and experimental values, the ...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
While the fundamental limit on the resolution achieved in an atomic force microscope (AFM) is clearl...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
Atomic force microscopy (AFM) can characterize nanomaterial elasticity. However, some one-dimensiona...
The elasticity of nanomaterial is extremely difficult to be obtained with traditional method due t...
A new method to determine the elastic modulus of a material using the atomic force microscope (AFM) ...
In this paper, a new approach is demonstrated to measure the compression elasticity of single biomol...
International audienceWe present a procedure that allows a reliable determination of the elastic (Yo...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
The AFM nanoindentation technique is a powerful tool for the mechanical characterization of biologic...
We developed a new technique to measure elastic properties by using the atomic force microscope (AFM...
The radial compression properties of single DNA molecules have been studied using vibrating scanning...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
While the fundamental limit on the resolution achieved in an atomic force microscope (AFM) is clearl...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...
Atomic force microscopy (AFM) can characterize nanomaterial elasticity. However, some one-dimensiona...
The elasticity of nanomaterial is extremely difficult to be obtained with traditional method due t...
A new method to determine the elastic modulus of a material using the atomic force microscope (AFM) ...
In this paper, a new approach is demonstrated to measure the compression elasticity of single biomol...
International audienceWe present a procedure that allows a reliable determination of the elastic (Yo...
Atomic force microscopy (AFM) has emerged as a popular tool for the mechanical mapping of soft nanom...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
Studying the mechanical properties of short segments of dsDNA can provide insight into various bioph...
The AFM nanoindentation technique is a powerful tool for the mechanical characterization of biologic...
We developed a new technique to measure elastic properties by using the atomic force microscope (AFM...
The radial compression properties of single DNA molecules have been studied using vibrating scanning...
The behavior and mechanical properties of cells are strongly dependent on the biochemical and biomec...
A method is proposed for quantitatively measuring the elastic modulus of materials using atomic forc...
While the fundamental limit on the resolution achieved in an atomic force microscope (AFM) is clearl...
The advent of atomic force microscopy (AFM) provides a powerful tool for investigating the behaviors...