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https://hdl.handle.net/10442/12833
Εξειδίκευση τύπου : | Άρθρο σε επιστημονικό περιοδικό |
Τίτλος: | Some Unconventional Organic-Inorganic Hybrid Low-Dimensional Semiconductors and Related Light-Emitting Devices |
Δημιουργός/Συγγραφέας: | Koutselas, I. Bampoulis, P. Maratou, E. Evagelinou, T. Pagona, G. [EL] Παπαβασιλείου Γεώργιος[EN] Papavassiliou, George C. |
Εκδότης: | American Chemical Society |
Τόπος έκδοσης: | WASHINGTON |
Ημερομηνία: | 2011-05-05 |
Γλώσσα: | Αγγλικά |
ISSN: | 1932-7447 |
DOI: | 10.1021/jp111881b |
Περίληψη: | Structural, optical, electrical, and optoelectronic properties, as well as prototype light-emitting devices, are being reported for the two-dimensional (quantum well) organic-inorganic hybrid semiconductor systems based on the organic cations CH(3)-(CH(2))(7)CH=CH(CH(2))(8)NH(3)(+) (OL) and on the inorganic networks formed out of MX(4)(2-) anions, where M = Pb and X = I, Br, and Cl. These new crystalline compounds show extremely intense excitonic bands at chemically controllable positions in the ultraviolet-visible spectral region, with excitonic binding energies of more than 180 meV at room temperature. These novel properties render them as strong potential candidates in optoelectronic applications, comparable to the artificial low-dimensional systems. Prototype light-emitting devices (LED) based on the above-mentioned compounds exhibit naked eye electroluminescence, in some cases, semicontinuous operation, for the first time at room temperature. In addition, these devices operate at relatively low voltages and are readily realized. Because of the enhanced film-forming and degradation-resistant properties of the active materials, the device functionality is being exhibited for weeks. Thus, it is expected that this particular reported synthetic route of hybrid organic-inorganic semiconductors could provide cost-effective materials for novel optoelectronic devices. Moreover, the properties of some composite systems of the type (CH(3)NH(3))(n-1)(OL)(2)Pb(n)X(3n+1) are being reported briefly. |
Τίτλος πηγής δημοσίευσης: | Journal of Physical Chemistry C |
Τόμος/Κεφάλαιο: | 115 |
Τεύχος: | 17 |
Σελίδες: | 8475-8483 |
Θεματική Κατηγορία: | [EL] Χημεία (Γενικά)[EN] Chemistry (General) [EL] Επιστήμη (Γενικά)[EN] Science (General) [EL] Τεχνολογία (Γενικά)[EN] Technology (General) |
Λέξεις-Κλειδιά: | Chemistry, Physical Nanoscience & Nanotechnology Materials Science, Multidisciplinary |
Αξιολόγηση από ομότιμους (peer reviewed): | Ναι |
EU Grant identifier: | info:eu-repo/grantAgreement/EC/FP7/201729 |
Κάτοχος πνευματικών δικαιωμάτων: | © AMER CHEMICAL SOC |
Ηλεκτρονική διεύθυνση περιοδικού (link) : | http://pubs.acs.org/journals/jpccck/ |
Εμφανίζεται στις συλλογές: | Ινστιτούτο Θεωρητικής και Φυσικής Χημείας (ΙΘΦΧ) - Επιστημονικό έργο
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