Search for Singlet Fission Chromophores
Zdeněk Havlas, Akın Akdağ, Millicent B. Smith, Paul I. Dron, Justin C. Johnson, Arthur J. Nozik, Josef Michl
Abstract
Zdeněk Havlas, Akın Akdağ, Millicent B. Smith, Paul I. Dron, Justin C. Johnson, Arthur J. Nozik, Josef Michl
Abstract
Singlet fission, in which a singlet excited chromophore shares its energy with a ground-state neighbor and both end up in their triplet states, is of potential interest for solar cells. Only a handful of compounds, mostly alternant hydrocarbons, are known to perform efficiently. In view of the large number of conditions that a successful candidate for a practical cell has to meet, it appears desirable to extend the present list of high performers to additional classes of compounds. We have (i) identified design rules for new singlet fission chromophores and for their coupling to covalent dimers, (ii) synthesized them, and (iii) evaluated their performance as neat solids or covalent dimers.
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Singlet fission, in which a singlet excited chromophore shares its energy with a ground-state neighbor and both end up in their triplet states, is of potential interest for solar cells. Only a handful of compounds, mostly alternant hydrocarbons, are known to perform efficiently. In view of the large number of conditions that a successful candidate for a practical cell has to meet, it appears desirable to extend the present list of high performers to additional classes of compounds. We have (i) identified design rules for new singlet fission chromophores and for their coupling to covalent dimers, (ii) synthesized them, and (iii) evaluated their performance as neat solids or covalent dimers.
Key concepts: Chromophore, Singlet fission, Singlet state, Covalent bond, Excited state, Fission, Chemistry, Coupling (piping)