The problem of developing conducting molecular wires has recently received increased attention. We present the results of molecular dynamics simulations aimed at investigating the self-organization process of conjugated 2,5-dialkoxy-phenylene-thiophene-based oligomers (TBT) on a monolayer graphene over a wide range of temperatures. The local structural characteristics of the TBT oligomers and the macroscopic characteristics of their aggregates are investigated. It is shown that electrostatic interactions significantly affect the local structural characteristics of the molecules resulting in liquid-crystalline type of ordering of the oligomers on graphene. It is also found that the length of the oligomers assures the structural stability of ...
The self-assembly properties of a series of functionalized regioregular oligo(3-alkylthiophenes) wer...
Polythiophenes are conductive polymers with outstanding semiconducting, optical, electroluminescent ...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
Well-defined -conjugated oligomers play an important role in the field of organic electronics, becau...
We have investigated, using atomistic molecular dynamics simulations, the high temperature molecular...
We theoretically investigate, by means of atomistic molecular dynamics simulations employing a tailo...
Organized ?-conjugated oligothiophene structures in water are highly promising building blocks to cr...
We have performed coarse-grained molecular dynamics simulations of thiophene-based conjugated oligom...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
Quantum-mechanics calculations and molecular simulations have been conducted for a series of thiophe...
Molecular dynamics simulations using atomistically detailed force fields are reported to investigate...
The possibility to develop optoelectronic devices with improved properties by controlling the degree...
A theoretical study of the adsorption and dynamics of tetraphenylporphyrins on a Ag(111) substrate a...
We studied ultrathin layers of n-cyanobiphenyl (n=5,6,7,8) mesogene molecules forming thin films on ...
The self-assembly properties of a series of functionalized regioregular oligo(3-alkylthiophenes) wer...
Polythiophenes are conductive polymers with outstanding semiconducting, optical, electroluminescent ...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...
Well-defined -conjugated oligomers play an important role in the field of organic electronics, becau...
We have investigated, using atomistic molecular dynamics simulations, the high temperature molecular...
We theoretically investigate, by means of atomistic molecular dynamics simulations employing a tailo...
Organized ?-conjugated oligothiophene structures in water are highly promising building blocks to cr...
We have performed coarse-grained molecular dynamics simulations of thiophene-based conjugated oligom...
The nanoscale organization of cycloparaphenylene molecules when physisorbed on a graphite surface is...
Quantum-mechanics calculations and molecular simulations have been conducted for a series of thiophe...
Molecular dynamics simulations using atomistically detailed force fields are reported to investigate...
The possibility to develop optoelectronic devices with improved properties by controlling the degree...
A theoretical study of the adsorption and dynamics of tetraphenylporphyrins on a Ag(111) substrate a...
We studied ultrathin layers of n-cyanobiphenyl (n=5,6,7,8) mesogene molecules forming thin films on ...
The self-assembly properties of a series of functionalized regioregular oligo(3-alkylthiophenes) wer...
Polythiophenes are conductive polymers with outstanding semiconducting, optical, electroluminescent ...
International audienceNano-porous two-dimensional molecular crystals, self-assembled on atomically f...