Eu doped silica-titania-polydimethylsiloxane hybrid ORMOSILs were synthesized a non-hydrolytic sol-gel route. The structural and thermal analyses of the samples confirmed that the matrix structure remains unaffected by doping with different concentrations of Eu ions. Photoluminescence (PL) studies performed at 394 nm on Eu doped ORMOSILs imply that they emit broad blue host emission and the characteristic Eu red emissions simultaneously. Also, the samples were excited at the charge transfer (CT) band and this confirmed the existence of an energy transfer path from the host to the Eu ions Ti-O-Eu bonds. The phonon energy of the host matrix was estimated by phonon sideband (PSB) analysis and the results were substantiated by Raman analysis. Judd-Ofelt (JO) parameters were also evaluated which give details about the local surroundings of the Eu ions in the system and these parameters were further used for predicting the radiative properties of D → F transitions of Eu ions. Furthermore, the quantum efficiency and CIE co-ordinates were evaluated and it was found that Eu doped silica-titania-polydimethylsiloxane ORMOSIL has an intense pinkish red emission with a quantum efficiency of 30.7%.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054130PMC
http://dx.doi.org/10.1039/d0ra03073bDOI Listing

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Eu doped silica-titania-polydimethylsiloxane hybrid ORMOSILs were synthesized a non-hydrolytic sol-gel route. The structural and thermal analyses of the samples confirmed that the matrix structure remains unaffected by doping with different concentrations of Eu ions. Photoluminescence (PL) studies performed at 394 nm on Eu doped ORMOSILs imply that they emit broad blue host emission and the characteristic Eu red emissions simultaneously.

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