A nanoscale understanding of the complex dynamics of large molecules at surfaces is essential for the bottom-up design of molecular nanostructures(1-8). Here we show that we can change the diffusion coefficient of the complex organic molecule known as Violet Lander (VL, C108H104) on Cu(110) by two orders of magnitude by using the STM at low temperatures to switch between two adsorption configurations that differ only in the molecular orientation with respect to the substrate lattice. From an interplay with molecular dynamics simulations, we interpret the results within a lock-and-key model similar to the one driving the recognition between biomolecules: the molecule (key) is immobilized only when its orientation is such that the molecular s...
cited By 0International audienceThe surface diffusion of individual molecules is of paramount import...
Single molecules and organic layers on well-defined solid surfaces have attracted tremendous attenti...
The realization of efficient organic electronic devices requires the controlled preparation of molec...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
By means of STM imaging and manipulation, we show that violet Lander (VL) molecules (C108H104) act a...
We show that the overall structure and flexibility of an organic molecule has a profound effect on t...
Molecular machines, typically thought to be only the fanciful imaginings of speculative fiction, hav...
The unusual bias-voltage dependence of copper-hexadecafluoro-phthalocyanine (F16CuPc) molecules on A...
Two types of functionalized molecules, wheels and switches, are studied with a low temperature scann...
The progress of modern technology is dominated by shrinking component size (with a goal of reaching ...
Using a simple rigid model of a chemisorbed molecule, we explore the relationship between a molecule...
image tunneling spectroscopy (CITS), we have studied the electronic properties of individual “Lander...
Scanning probe microscopy permits a characterization of the diffusion of atoms or molecules on surfa...
We introduce a method to determine the lateral diffusion constants of planar organic molecules adsor...
The Scanning Tunneling Microscope (STM) is well known as the best spatially resolved microscope toda...
cited By 0International audienceThe surface diffusion of individual molecules is of paramount import...
Single molecules and organic layers on well-defined solid surfaces have attracted tremendous attenti...
The realization of efficient organic electronic devices requires the controlled preparation of molec...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Coordenação de Aperfeiçoamento d...
By means of STM imaging and manipulation, we show that violet Lander (VL) molecules (C108H104) act a...
We show that the overall structure and flexibility of an organic molecule has a profound effect on t...
Molecular machines, typically thought to be only the fanciful imaginings of speculative fiction, hav...
The unusual bias-voltage dependence of copper-hexadecafluoro-phthalocyanine (F16CuPc) molecules on A...
Two types of functionalized molecules, wheels and switches, are studied with a low temperature scann...
The progress of modern technology is dominated by shrinking component size (with a goal of reaching ...
Using a simple rigid model of a chemisorbed molecule, we explore the relationship between a molecule...
image tunneling spectroscopy (CITS), we have studied the electronic properties of individual “Lander...
Scanning probe microscopy permits a characterization of the diffusion of atoms or molecules on surfa...
We introduce a method to determine the lateral diffusion constants of planar organic molecules adsor...
The Scanning Tunneling Microscope (STM) is well known as the best spatially resolved microscope toda...
cited By 0International audienceThe surface diffusion of individual molecules is of paramount import...
Single molecules and organic layers on well-defined solid surfaces have attracted tremendous attenti...
The realization of efficient organic electronic devices requires the controlled preparation of molec...