Band-gap modulation via gallium substitution in cerium doped gadolinium aluminum garnet using a mixed fuel combustion approach

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Abstract

Cerium doped Gadolinium garnets (Gd3AlxGa5-xO12 where 0≤x≤5) are synthesized via combustion synthesis using mixture of urea and glycine fuels. A 4h Post annealing at 1400 oC is found to be necessary for pure phase formation. Lattice spacing variation as a result of partial or total Ga substitution at Al site was mapped by X-ray diffraction. Photoluminescence emission of Ce shifts as a consequence of Ga substitution and therefore suggests a local re-adjustment of crystal field around activator site. © 2014 AIP Publishing LLC.

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Tyagi, M., Pitale, S. S., Ghosh, M., Shinde, S., & Gadkari, S. C. (2014). Band-gap modulation via gallium substitution in cerium doped gadolinium aluminum garnet using a mixed fuel combustion approach. In AIP Conference Proceedings (Vol. 1591, pp. 1253–1255). American Institute of Physics Inc. https://doi.org/10.1063/1.4872921

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