We study the assembling of P3HT chains in vacuo by means of a combination of first-principles density functional theory and model potential molecular dynamics. We find that, in the absence of any external constraints, the pi-pi interchain interaction between thiophenes is the major driving force for the assembling. Single chains stack in a staggered geometry giving rise to the formation of two-dimensional hydrophobic foils. These, in turn, assemble into a zigzag bulk polymer structure in agreement with experimental findings. Finally, in the presence of some external constraint (like a substrate), when the alignment of single chains is favored instead of the stacking, a different bulk structure is possible where thiophene rings are aligned.

Self-assembling of poly3-hexylthiophene

MELIS, CLAUDIO;COLOMBO, LUCIANO;
2011-01-01

Abstract

We study the assembling of P3HT chains in vacuo by means of a combination of first-principles density functional theory and model potential molecular dynamics. We find that, in the absence of any external constraints, the pi-pi interchain interaction between thiophenes is the major driving force for the assembling. Single chains stack in a staggered geometry giving rise to the formation of two-dimensional hydrophobic foils. These, in turn, assemble into a zigzag bulk polymer structure in agreement with experimental findings. Finally, in the presence of some external constraint (like a substrate), when the alignment of single chains is favored instead of the stacking, a different bulk structure is possible where thiophene rings are aligned.
2011
Polymer self-assembling - First principles calculations - Molecular dynamics simulations
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/103667
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