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Effect of heat-treatment on luminescence and structure of Ag nanoclusters doped oxyfluoride glasses and implication for fiber drawing

Title: Effect of heat-treatment on luminescence and structure of Ag nanoclusters doped oxyfluoride glasses and implication for fiber drawing
Authors: Kuznetsov, Aleksandr; Ngo, Toan Cuong; Tikhomirov, Victor; Jivanescu, Mihaela; Stesmans, Andre; Chibotaru, Liviu; Velazkuez, J.J.; Rodriguez, V.D.; Kirilenko, D.; Van Tendeloo, G.; Moshchalkov, Victor
Source: ISSN:0925-3467 ; ISSN:1873-1252 ; Optical Materials, vol. 34 (4), (616-621.
Publisher Information: Elsevier BV
Publication Year: 2012
Subject Terms: Silver nanoclusters; Oxyfluoride glass; Luminescence; Silver nanoclusters doped fiber; Silver nanocluster formation mechanism; Science & Technology; Technology; Physical Sciences; Materials Science; Multidisciplinary; Optics; METAL-CLUSTERS; LIGHT-EMISSION; CERAMICS; AGGLOMERATION; TEMPERATURE; CRYSTALS; 0204 Condensed Matter Physics; 0205 Optical Physics; 0912 Materials Engineering; Applied Physics; 5102 Atomic; molecular and optical physics; 5104 Condensed matter physics
Description: The effect of heat treatment on the structure and luminescence of Ag nanoclusters doped oxyfluoride glasses was studied and the implication for drawing the corresponding fibers doped with luminescent Ag nanoclusters has been proposed. The heat treatment results, first, in condensation of the Ag nanoclusters into larger Ag nanoparticles and loss of Ag luminescence, and further heat treatment results in precipitation of a luminescent-loss nano- and microcrystalline Ag phases onto the surface of the glass. Thus, the oxyfluoride fiber doped with luminescent Ag nanoclusters was pulled from the viscous glass melt and its attenuation loss was 0.19 dB/cm in the red part of the spectrum; i.e. near to the maximum of Ag nanoclusters luminescence band. The nucleation centers for the Ag nanoclusters in oxyfluoride glasses have been suggested to be the fluorine vacancies and their nanoclusters. ; sponsorship: a INPAC – Institute for Nanoscale Physics and Chemistry, Katholieke Universiteit Leuven, Belgium b Division of Quantum and Physical Chemistry, Katholieke Universiteit Leuven, Belgium c Departamento de Fisica Fundamental y Experimental, Electrónica y Systemas, Universidad de La Laguna, Tenerife, Spain d EMAT, Electron Microscopy for Materials Science, Universiteit Antwerpen, Belgium ; status: Published
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: https://lirias.kuleuven.be/handle/123456789/335615; https://doi.org/10.1016/j.optmat.2011.09.007
DOI: 10.1016/j.optmat.2011.09.007
Availability: https://lirias.kuleuven.be/handle/123456789/335615; https://lirias.kuleuven.be/retrieve/6282820d-5473-446a-ae59-4d17fd15ce7d; https://doi.org/10.1016/j.optmat.2011.09.007
Rights: info:eu-repo/semantics/openAccess ; public
Accession Number: edsbas.28A40641
Database: BASE