We report the synthesis of cinnamic acid-functionalized conjugated polymers, which are cross-linked via [2 + 2] cycloaddition by UV illumination, reducing their solubility. The cross-linking reaction was investigated by a combination of FTIR and optical spectroscopy, and an optimum condition for the solubility modulation of thin films, a major challenge in the solution-phase fabrication of layered optoelectronic devices, was reached. As proof of concept, OLEDs were fabricated, using these conjugated polymers as emissive layers
For cost-efficient organic electronic devices, the consecutive deposition of active layers by soluti...
This project was designed to investigate the possibility of producing alignment layers for liquid cr...
A series of cross-linked thin films were prepared via thiol–ene click chemistry from 4-phenylethenyl...
Solution-processing of multilayered Organic Light Emitting Diodes (OLEDs) remains a challenge that i...
Photosensitive polymers with photo-crosslinkable groups have gained a considerable interest in recen...
We report the synthesis and characterization of a cross-linkable, cinnamic acid functionalized, hole...
We introduce a catalyst-free, highly efficient, ambient temperature Diels-Alder reaction employing o...
To simplify the fabrication of multilayer light-emitting diodes, we prepared a p-phenylenevinylene-b...
AbstractThis feature article presents a short review of the recent developments in the synthesis of ...
The design, synthesis, and characterization of solution-processable polymers for organic light emitt...
Development of a simple and effective patterning method applicable to solution-processable organic l...
This work is devoted to the rational design of conjugated polymers for optoelectronic applications. ...
Organic light-emitting transistors (OLETs) show the fascinating combination of electrical switching ...
A general procedure to increase the amount of photoreactive chromophore groups per oligoether chai...
Numerous semiconductive organic materials are actively being pursued for application in sensing and ...
For cost-efficient organic electronic devices, the consecutive deposition of active layers by soluti...
This project was designed to investigate the possibility of producing alignment layers for liquid cr...
A series of cross-linked thin films were prepared via thiol–ene click chemistry from 4-phenylethenyl...
Solution-processing of multilayered Organic Light Emitting Diodes (OLEDs) remains a challenge that i...
Photosensitive polymers with photo-crosslinkable groups have gained a considerable interest in recen...
We report the synthesis and characterization of a cross-linkable, cinnamic acid functionalized, hole...
We introduce a catalyst-free, highly efficient, ambient temperature Diels-Alder reaction employing o...
To simplify the fabrication of multilayer light-emitting diodes, we prepared a p-phenylenevinylene-b...
AbstractThis feature article presents a short review of the recent developments in the synthesis of ...
The design, synthesis, and characterization of solution-processable polymers for organic light emitt...
Development of a simple and effective patterning method applicable to solution-processable organic l...
This work is devoted to the rational design of conjugated polymers for optoelectronic applications. ...
Organic light-emitting transistors (OLETs) show the fascinating combination of electrical switching ...
A general procedure to increase the amount of photoreactive chromophore groups per oligoether chai...
Numerous semiconductive organic materials are actively being pursued for application in sensing and ...
For cost-efficient organic electronic devices, the consecutive deposition of active layers by soluti...
This project was designed to investigate the possibility of producing alignment layers for liquid cr...
A series of cross-linked thin films were prepared via thiol–ene click chemistry from 4-phenylethenyl...