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Published on: April 19, 2019
Acetylide-bridged tetracene dimers
Vincent S Barlier1, Cody W Schlenker, Stephanie W Chin
1Department of Chemistry and the Center for Energy Nanosciences, University of Southern California, Los Angeles, California 90089-0744, USA.
New alkyne-linked tetracene dimers were synthesized. These novel organic molecules show promise for use in organic photovoltaic devices due to their excellent solubility and light absorption properties.
Area of Science:
- Organic Chemistry
- Materials Science
- Photovoltaics
Background:
- Tetracene derivatives are important organic semiconductors.
- Developing new synthetic routes for functionalized tetracenes is crucial for advancing organic electronics.
Purpose of the Study:
- To synthesize novel alkyne-linked tetracene dimers.
- To investigate the properties of these dimers for potential applications in organic electronic devices.
Main Methods:
- Synthesis of tetracene dimers via reactions involving naphthacenequinone and terminal acetylenes.
- Characterization of the synthesized silylethynyl tetracene dimers.
Main Results:
- Successfully synthesized alkyne-linked tetracene dimers.
- The silylethynyl tetracene dimers demonstrated good solubility.
- These dimers exhibited high photostability and broad light absorption.
- The dimers were capable of generating photocurrent in an organic photovoltaic device.
Conclusions:
- Alkyne-linked tetracene dimers represent a promising class of materials for organic electronics.
- The synthesized dimers possess favorable properties for efficient organic photovoltaic devices.
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