The solid-state supramolecular organization of block copolymers containing one π-conjugated block and one non-conjugated block is elucidated with a joint experimental and theoretical approach. This approach combines atomic force microscopy (AFM) measurements on thin polymer deposits, which reveal the typical microscopic morphologies, and molecular modeling, which allows one to derive the models for chain packing that are most likely to explain the AFM observations. The conjugated systems considered in this study are based on aromatic building blocks (i.e. phenylene, phenylene ethylene, fluorene, or indenofluorene), substituted with alkyl groups to provide solubility; they are attached to non-conjugated blocks such as polydimethylsiloxane, p...
In this work, the self-assembled morphologies obtained for poly(styrene-b-butadiene-b-styrene) (SBS)...
Comblike copolymers with randomly distributed polystyrene (PS) and polyisoprene (PI) branches, i.e.,...
\u3cp\u3eSupramolecular block copolymers are becoming attractive materials in nascent optoelectronic...
The solid-state supramolecular organization of block copolymers containing one π-conjugated block an...
A series of conjugated copolymers containing fluorene or indenofluorene units alternating with oligo...
Properties of organic electronic materials in solid-state are determined as individual molecules and...
The properties of organic electronic materials in the solid-state are determined not only by those o...
The properties of organic electronic materials in the solid-state are determined not only by those o...
The ability of block copolymers (BCP) to self-assemble into highly ordered, periodic nanostructures ...
The morphology of thin films of conjugated polymers and block copolymers (containing one conjugated ...
We characterize the structure and mechanical properties of 1,3,5-benzenetricarboxamide (BTA) supramo...
This article highlights some original block copolymer properties that have been studied in recent ye...
Two conjugated oligomers, representing elementary segments of fluorene-thiophene copolymers, are com...
Atomic force microscopy (AFM) is used to study the phase separation process occurring in block copol...
In the last decade, block copolymers have attracted growing interest because of their ability to for...
In this work, the self-assembled morphologies obtained for poly(styrene-b-butadiene-b-styrene) (SBS)...
Comblike copolymers with randomly distributed polystyrene (PS) and polyisoprene (PI) branches, i.e.,...
\u3cp\u3eSupramolecular block copolymers are becoming attractive materials in nascent optoelectronic...
The solid-state supramolecular organization of block copolymers containing one π-conjugated block an...
A series of conjugated copolymers containing fluorene or indenofluorene units alternating with oligo...
Properties of organic electronic materials in solid-state are determined as individual molecules and...
The properties of organic electronic materials in the solid-state are determined not only by those o...
The properties of organic electronic materials in the solid-state are determined not only by those o...
The ability of block copolymers (BCP) to self-assemble into highly ordered, periodic nanostructures ...
The morphology of thin films of conjugated polymers and block copolymers (containing one conjugated ...
We characterize the structure and mechanical properties of 1,3,5-benzenetricarboxamide (BTA) supramo...
This article highlights some original block copolymer properties that have been studied in recent ye...
Two conjugated oligomers, representing elementary segments of fluorene-thiophene copolymers, are com...
Atomic force microscopy (AFM) is used to study the phase separation process occurring in block copol...
In the last decade, block copolymers have attracted growing interest because of their ability to for...
In this work, the self-assembled morphologies obtained for poly(styrene-b-butadiene-b-styrene) (SBS)...
Comblike copolymers with randomly distributed polystyrene (PS) and polyisoprene (PI) branches, i.e.,...
\u3cp\u3eSupramolecular block copolymers are becoming attractive materials in nascent optoelectronic...