Supramolecular Networks with Electron Transfer in Two Dimensions

Organic charge-transfer (CT) co-crystals in a crossed stack system are disclosed. The co-crystals exhibit bidirectional charge transfer interactions where one donor molecule shares electrons with two different acceptors, one acceptor face-to-face and the other edge-to-face. The assembly and charge t...

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Main Authors Narayanan Ashwin, Stupp Samuel I, Stoddart J. Fraser, Shveyd Alexander K, Tayi Alok S, Sue Chi-Hau
Format Patent
LanguageEnglish
Published 22.12.2016
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Abstract Organic charge-transfer (CT) co-crystals in a crossed stack system are disclosed. The co-crystals exhibit bidirectional charge transfer interactions where one donor molecule shares electrons with two different acceptors, one acceptor face-to-face and the other edge-to-face. The assembly and charge transfer interaction results in a pleochroic material whereby the optical absorption continuously changes depending on the polarization angle of incident light.
AbstractList Organic charge-transfer (CT) co-crystals in a crossed stack system are disclosed. The co-crystals exhibit bidirectional charge transfer interactions where one donor molecule shares electrons with two different acceptors, one acceptor face-to-face and the other edge-to-face. The assembly and charge transfer interaction results in a pleochroic material whereby the optical absorption continuously changes depending on the polarization angle of incident light.
Author Stupp Samuel I
Sue Chi-Hau
Stoddart J. Fraser
Tayi Alok S
Narayanan Ashwin
Shveyd Alexander K
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Sue Chi-Hau
Stoddart J. Fraser
Tayi Alok S
Narayanan Ashwin
Shveyd Alexander K
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Snippet Organic charge-transfer (CT) co-crystals in a crossed stack system are disclosed. The co-crystals exhibit bidirectional charge transfer interactions where one...
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SubjectTerms BASIC ELECTRIC ELEMENTS
CABLES
CONDUCTORS
ELECTRICITY
INSULATORS
OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
OPTICS
PHYSICS
SELECTION OF MATERIALS FOR THEIR CONDUCTIVE, INSULATING ORDIELECTRIC PROPERTIES
Title Supramolecular Networks with Electron Transfer in Two Dimensions
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