2012Advanced MaterialsRequires access

What Makes Fullerene Acceptors Special as Electron Acceptors in Organic Solar Cells and How to Replace Them

Tao Liu, Alessandro Troisi

Open publisher page 309 citations

Abstract

Low lying excited states of the fullerene anion promote a faster charge separation in organic solar cells containing fullerene derivatives as electron acceptors. Alternative electron acceptors, not based on fullerenes but that share the same property, can be easily designed. On the other hand, it is unlikely for a generic electron acceptor to replicate this fullerene characteristic by chance.

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Low lying excited states of the fullerene anion promote a faster charge separation in organic solar cells containing fullerene derivatives as electron acceptors. Alternative electron acceptors, not based on fullerenes but that share the same property, can be easily designed. On the other hand, it is unlikely for a generic electron acceptor to replicate this fullerene characteristic by chance.

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Available abstract

Low lying excited states of the fullerene anion promote a faster charge separation in organic solar cells containing fullerene derivatives as electron acceptors. Alternative electron acceptors, not based on fullerenes but that share the same property, can be easily designed. On the other hand, it is unlikely for a generic electron acceptor to replicate this fullerene characteristic by chance.

Key concepts: Fullerene, Organic solar cell, Materials science, Electron acceptor, Nanotechnology, Electron, Photochemistry, Organic chemistry

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