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Εξειδίκευση τύπου : Άρθρο σε επιστημονικό περιοδικό
Τίτλος: Azafullerene C59N in donor-acceptor dyads: Synthetic approaches and properties
Δημιουργός/Συγγραφέας: Rotas G.
[EL] Ταγματάρχης, Νίκος[EN] Tagmatarchis, Nikossemantics logo
Εκδότης: Wiley-VCH Verlag
Ημερομηνία: 2016
Γλώσσα: Αγγλικά
ISSN: 0947-6539
DOI: 10.1002/chem.201502190
Περίληψη: Energy conversion schemes have attracted considerable attention in recent years. A large amount of research effort has focused on fullerenes, particularly C60 and its derivatives, as suitable electron acceptors, owing to their outstanding properties. In this context, C59N-based donor-acceptor systems have lately attracted attention, owing to their exceptional energy-and electron-transfer properties. As a result, chemical derivatization of C59N plays an important role in the realization of the aforementioned systems. The current Minireview aims to familiarize researchers with the main aspects of azafullerene synthesis, chemistry, and photophysical properties, while it mainly focuses on the synthetic methodologies employed for as well as on energy conversion schemes of azafullerene-based donor-acceptor systems. Energy conversion schemes: Donor-acceptor systems based on the azafullerene C59N are reviewed. While focusing on the synthetic strategies, the properties of systems employing this azafullerene as electron or energy acceptor are also presented, unfolding both the synthetic access as well as the unique electronic properties of these systems. Both in dyads in solution as well as in solar cell devices, C59N is revealed as a promising acceptor for energy conversion schemes.
Τίτλος πηγής δημοσίευσης: Chemistry - A European Journal
Τόμος/Κεφάλαιο: 22
Τεύχος: 4
Σελίδες: 1206-1214
Θεματική Κατηγορία: [EL] Φυσική και θεωρητική χημεία[EN] Physical and theoretical chemistrysemantics logo
Λέξεις-Κλειδιά: azafullerene
charge transfer
donor-acceptor systems
functionalization
solar cells
Αξιολόγηση από ομότιμους (peer reviewed): Ναι
Κάτοχος πνευματικών δικαιωμάτων: © 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
Σημειώσεις: European Commission, EC; General Secretariat for Research and Technology, GSRT; European Regional Development Fund, FEDER: 447963
Partial financial support from the Greek General Secretariat for Research and Technology and the European Commission, through the European Fund for Regional Development, 2007-2013 action "Development of Research Centres-KPHPIS", project 447963 "New Multifunctional Nanostructured Materials and Devices-POLYNANO" is acknowledged.
Εμφανίζεται στις συλλογές:Ινστιτούτο Θεωρητικής και Φυσικής Χημείας (ΙΘΦΧ) - Επιστημονικό έργο

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