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Thermal quenching at the microscopic level in multi-phase thiosilicate phosphors

Philippe Smet (UGent) , Jonas Botterman (UGent) , Anthony Parmentier (UGent) and Dirk Poelman (UGent)
(2013) OPTICAL MATERIALS. 35(11). p.1970-1975
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Center for nano- and biophotonics (NB-Photonics)
Keywords
cathodoluminescence, photoluminescence, displays, narrow-band, saturated, green, EuGa2S4, ZnGa2S4, europium, thiogallate, LIGHT-EMITTING-DIODES, LUMINESCENCE PROPERTIES, CONVERSION PHOSPHORS, NITRIDE PHOSPHORS, LEDS

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Citation

Please use this url to cite or link to this publication:

Chicago
Smet, Philippe, Jonas Botterman, Anthony Parmentier, and Dirk Poelman. 2013. “Thermal Quenching at the Microscopic Level in Multi-phase Thiosilicate Phosphors.” Optical Materials 35 (11): 1970–1975.
APA
Smet, Philippe, Botterman, J., Parmentier, A., & Poelman, D. (2013). Thermal quenching at the microscopic level in multi-phase thiosilicate phosphors. OPTICAL MATERIALS, 35(11), 1970–1975.
Vancouver
1.
Smet P, Botterman J, Parmentier A, Poelman D. Thermal quenching at the microscopic level in multi-phase thiosilicate phosphors. OPTICAL MATERIALS. 2013;35(11):1970–5.
MLA
Smet, Philippe et al. “Thermal Quenching at the Microscopic Level in Multi-phase Thiosilicate Phosphors.” OPTICAL MATERIALS 35.11 (2013): 1970–1975. Print.
@article{4197522,
  author       = {Smet, Philippe and Botterman, Jonas and Parmentier, Anthony and Poelman, Dirk},
  issn         = {0925-3467},
  journal      = {OPTICAL MATERIALS},
  keywords     = {cathodoluminescence,photoluminescence,displays,narrow-band,saturated,green,EuGa2S4,ZnGa2S4,europium,thiogallate,LIGHT-EMITTING-DIODES,LUMINESCENCE PROPERTIES,CONVERSION PHOSPHORS,NITRIDE PHOSPHORS,LEDS},
  language     = {eng},
  number       = {11},
  pages        = {1970--1975},
  title        = {Thermal quenching at the microscopic level in multi-phase thiosilicate phosphors},
  url          = {http://dx.doi.org/10.1016/j.optmat.2012.10.051},
  volume       = {35},
  year         = {2013},
}

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