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Optical properties of Er3+ in fullerenes and in β-PbF2 single-crystals

Abstract:
With the aim of providing a thorough description of the optical properties of Er3+-doped endohedral fullerenes, we studied their characteristics in the light of those of well-known Er3+-doped β-PbF2 single-crystals. Various Er3+-doped endohedral fullerenes were considered: Er2C2@C82, where the Er2C2 group is encapsulated inside a cage of 82 carbon atoms and the Er3-xScxN@C80 (x = 0, 1 and 2) family, where the Er3N, Er2ScN and ErSc2N clusters are trapped in a 80 carbon atom cage. In this article, we discuss the absorption and photoluminescence of trivalent erbium ions in fullerenes and in β-PbF2 crystals. The extinction coefficient of Er3N@C80 was found to be 4.8 (±0.5) × 103 mol/l-1 cm-1 at 540 nm, due to the C80 cage absorbance. Even in a saturated fullerene solution, the absorption of Er3+ encapsulated inside a C80 cage cannot be observed at room temperature. We suggest that this is due to an insufficient number of Er3+ ions in the solution and their low absorption cross-section. Low temperature photoluminescence measurements show that the line width of Er3+ in a carbon cage, dissolved in a polycrystalline solvent, is similar to the one of Er3+ in β-PbF2 single-crystals. The quantum efficiency of Er3+ at 1.5 μm in fullerenes is four orders of magnitude lower than that for Er3+ in crystals, due to very efficient non-radiative decay processes. Molecular vibrations of the cage might be responsible for those rapid non-radiative de-excitations. © 2009 Elsevier B.V. All rights reserved.

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Publisher copy:
10.1016/j.optmat.2009.07.021

Authors


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Institution:
University of Oxford
Division:
MPLS
Department:
Materials
Role:
Author


Journal:
Optical Materials More from this journal
Volume:
32
Issue:
1
Pages:
251-256
Publication date:
2009-11-01
DOI:
ISSN:
0925-3467


Language:
English
Pubs id:
pubs:134822
UUID:
uuid:47fca028-4066-427f-9548-640ccb53f07d
Local pid:
pubs:134822
Source identifiers:
134822
Deposit date:
2012-12-19

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