<p>The attachment of molecular rotary motors containing triethoxysilane functional groups to quartz, silicon and mica surfaces is described. Motors containing silane coupling agents in their structure form stable molecular layers on quartz and silicon surfaces. Motors attached to these surfaces were found to undergo photochemical and thermal isomerization steps similar to those observed in solution. Additionally, successful formation of molecular "carpets" on atomically flat mica extending micrometer-sized length scales is presented. These "carpets" were found to undergo morphological changes upon irradiation with UV-light.</p>
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
In order to improve the rotary motion of surface assembled light-driven molecular motors, tetra-acid...
The functionalization of optically transparent substrates is of importance, for example, in the fiel...
The attachment of molecular rotary motors containing triethoxysilane functional groups to quartz, si...
The attachment of molecular rotary motors containing triethoxysilane functional groups to quartz, si...
We report the synthesis of altitudinal molecular motors that contain functional groups in their roto...
We report the synthesis of altitudinal molecular motors that contain functional groups in their roto...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
In order to improve the rotary motion of surface assembled light-driven molecular motors, tetra-acid...
The functionalization of optically transparent substrates is of importance, for example, in the fiel...
The attachment of molecular rotary motors containing triethoxysilane functional groups to quartz, si...
The attachment of molecular rotary motors containing triethoxysilane functional groups to quartz, si...
We report the synthesis of altitudinal molecular motors that contain functional groups in their roto...
We report the synthesis of altitudinal molecular motors that contain functional groups in their roto...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
A Cu(I)-catalyzed 1,3-dipolar cycloaddition was used to construct a monolayer of an altitudinal mole...
We report the attachment of altitudinal light-driven molecular motors to surfaces using 1,3-dipolar ...
In order to improve the rotary motion of surface assembled light-driven molecular motors, tetra-acid...
The functionalization of optically transparent substrates is of importance, for example, in the fiel...