First-principles calculations combined with kinetic Monte Carlo simulations are carried out to unambiguously demonstrate the vital role of van der Waals (vdW) interactions in the self-assembly of styrene nanowires on H-terminated Si(100) surfaces. We find that, only with the inclusion of London dispersion forces, accounting for the attractive parts of vdW interactions, are the effective intermolecular interactions reversed from repulsive to attractive. Such attractive interactions, in turn, ensure the preferred growth of long wires under physically realistic conditions as observed experimentally. We further propose a cooperative scheme, invoking the application of an electric field and the selective creation of Si dangling bonds, to drastic...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Advances in techniques for the nanoscale manipulation of matter are important for the realization of...
Spontaneous attractions between free-standing nanostructures have often caused adhesion or stiction ...
Using first principles quantum mechanics (DFT/GGA with pseudopotentials) calculations, we propose a ...
peer reviewedVan der Waals interactions have a fundamental role in biology, physics and chemistry, i...
Non-covalent van der Waals interactions play a major role at the nanoscale, and even a slight change...
International audienceThe self-assembly of two-dimensional (2D) molecular structures on a solid surf...
Este trabalho trata do estudo teórico atomístico das conformações da molécula de estireno sobre a su...
Current interest in methods for controllably adding organic molecules to silicon surfaces relates to...
Observation of van der Waals driven self-assembly of Mo6S 3I6 nanowires into a low-symmetry structur...
International audienceThe self-assembly of two-dimensional (2D)molecular structures on a solid surfa...
© 2018 National Academy of Sciences. All rights reserved. General properties of the recently observe...
The self-assembly of two-dimensional (2D) molecular structures on a solid surface relies on the subt...
Van der Waals interactions play a fundamental role in biology, physics, and chemistry, in particular...
We present an ab initio study of the electronic properties of styrene molecules adsorbed on the dime...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Advances in techniques for the nanoscale manipulation of matter are important for the realization of...
Spontaneous attractions between free-standing nanostructures have often caused adhesion or stiction ...
Using first principles quantum mechanics (DFT/GGA with pseudopotentials) calculations, we propose a ...
peer reviewedVan der Waals interactions have a fundamental role in biology, physics and chemistry, i...
Non-covalent van der Waals interactions play a major role at the nanoscale, and even a slight change...
International audienceThe self-assembly of two-dimensional (2D) molecular structures on a solid surf...
Este trabalho trata do estudo teórico atomístico das conformações da molécula de estireno sobre a su...
Current interest in methods for controllably adding organic molecules to silicon surfaces relates to...
Observation of van der Waals driven self-assembly of Mo6S 3I6 nanowires into a low-symmetry structur...
International audienceThe self-assembly of two-dimensional (2D)molecular structures on a solid surfa...
© 2018 National Academy of Sciences. All rights reserved. General properties of the recently observe...
The self-assembly of two-dimensional (2D) molecular structures on a solid surface relies on the subt...
Van der Waals interactions play a fundamental role in biology, physics, and chemistry, in particular...
We present an ab initio study of the electronic properties of styrene molecules adsorbed on the dime...
Understanding how molecules interact to form large-scale hierarchical structures on surfaces holds p...
Advances in techniques for the nanoscale manipulation of matter are important for the realization of...
Spontaneous attractions between free-standing nanostructures have often caused adhesion or stiction ...