The present work focuses on sol-gel derived SnO-based thin glass-ceramic films doped with Er ions, fabricated by dipcoating technique. Our goal is to find a viable fabrication protocol to obtain them. Thin films with a variety of composition were synthesized and their structural, optical and spectroscopic properties were investigated. The FTIR spectra and X-ray diffraction patterns were used to characterize the structure of the thin films. The transparency of the thin film was tested by UV-Vis transmittance measurements. The energy transfer dynamic was investigated by time-resolved spectroscopy and photoluminescence measurements.

SnO2 based glasses: A viable photonic system

Zur L;Zonta D;Ferrari M
2016

Abstract

The present work focuses on sol-gel derived SnO-based thin glass-ceramic films doped with Er ions, fabricated by dipcoating technique. Our goal is to find a viable fabrication protocol to obtain them. Thin films with a variety of composition were synthesized and their structural, optical and spectroscopic properties were investigated. The FTIR spectra and X-ray diffraction patterns were used to characterize the structure of the thin films. The transparency of the thin film was tested by UV-Vis transmittance measurements. The energy transfer dynamic was investigated by time-resolved spectroscopy and photoluminescence measurements.
2016
Istituto di fotonica e nanotecnologie - IFN
978-1-78561-268-8
energy transfer
transparent glass-ceramics
SnO2-SiO2
rare-earths
luminescence
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/368302
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