Adhesion is caused by molecular interactions that only take place if the surfaces are in nanoscale contact (NSC); i.e., the distance between the surfaces is in the range of 0.1–0.4 nm. However, there are several difficulties measuring the NSC between surfaces, mainly because regions that appear to be in full contact at low magnification may show no NSC when observed at higher magnifications. Thus, the measurement area of NSC is very small with imaging techniques, and an experimental technique to evaluate NSC for large contact areas has not been available thus far. Here, we are proposing Förster resonance energy transfer (FRET) spectroscopy/microscopy for this purpose. We demonstrate that NSC in a distance range of 1–10 nm can be evaluated. ...
It is frequently observed that high resolution is difficult to achieve when using atomic force micro...
Adhesion assessment of nanoscale contacts is a critical capability for the development of future nan...
Supramolecular systems have applications in areas as diverse as materials science, biochemistry, ana...
Interfacial adhesion is caused by intermolecular forces that only occur between surfaces at nano-sca...
Abstract. The degree of molecular contact, i.e. the contact area on the nanometer scale, between pap...
The present manuscript gives a short overview on Förster Resonance Energy Transfer (FRET) of molecul...
The adhesion of micro- and nanoparticles to solid substrates immersed in liquids is a problem of gre...
Fluorescence resonance energy transfer (FRET) between excited fluorescent donor and acceptor molecul...
Nanoscale contacts are relevant in advanced technologies like nanomanufacturing, scanning probe micr...
For a physical understanding of adhesion, surfaces of defined adhesion properties are required. In t...
The miniaturization of devices and the advances in nanotechnol.-enabled products has led to the requ...
The adhesion between nanoscale components has been shown to increase with applied load, contradictin...
Applications based on Single Walled Carbon Nanotube (SWNT) are good example of the great need to con...
Dispersion forces start to play an important role when the bodies are separated by the distances sma...
Dispersion forces start to play an important role when the bodies are separated by the distances sma...
It is frequently observed that high resolution is difficult to achieve when using atomic force micro...
Adhesion assessment of nanoscale contacts is a critical capability for the development of future nan...
Supramolecular systems have applications in areas as diverse as materials science, biochemistry, ana...
Interfacial adhesion is caused by intermolecular forces that only occur between surfaces at nano-sca...
Abstract. The degree of molecular contact, i.e. the contact area on the nanometer scale, between pap...
The present manuscript gives a short overview on Förster Resonance Energy Transfer (FRET) of molecul...
The adhesion of micro- and nanoparticles to solid substrates immersed in liquids is a problem of gre...
Fluorescence resonance energy transfer (FRET) between excited fluorescent donor and acceptor molecul...
Nanoscale contacts are relevant in advanced technologies like nanomanufacturing, scanning probe micr...
For a physical understanding of adhesion, surfaces of defined adhesion properties are required. In t...
The miniaturization of devices and the advances in nanotechnol.-enabled products has led to the requ...
The adhesion between nanoscale components has been shown to increase with applied load, contradictin...
Applications based on Single Walled Carbon Nanotube (SWNT) are good example of the great need to con...
Dispersion forces start to play an important role when the bodies are separated by the distances sma...
Dispersion forces start to play an important role when the bodies are separated by the distances sma...
It is frequently observed that high resolution is difficult to achieve when using atomic force micro...
Adhesion assessment of nanoscale contacts is a critical capability for the development of future nan...
Supramolecular systems have applications in areas as diverse as materials science, biochemistry, ana...