Effects of different organic additives on the formation of YVO4:Eu3+ microspheres under hydrothermal conditions
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Reference33 articles.
1. Wet-Chemical Synthesis of Doped Colloidal Nanoparticles: YVO4:Ln (Ln = Eu, Sm, Dy)
2. In situ chemical coprecipitation composition of hybrid precursors to synthesize YPxV1−xO4:Eu3+ micron crystalline phosphors
3. Luminescent characteristics and morphology of Eu3+:YVO4 phosphor powders prepared by HCR and flux techniques
4. Novel red phosphors for solid state lighting; the system BixLn1−xVO4; Eu3+/Sm3+ (Ln=Y, Gd)
5. Spectral properties and emission efficiencies of GdVO 4 phosphors
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2. Preparation of novel mesoporous GdVO4: Eu3+ crystals by CTAB-SDS micellar-assisted hydrothermal method in wide pH range;Optical Materials;2019-10
3. Hydrothermal synthesis of YVO4:Eu3+ micron-sized spheres and their photoluminescence properties;Materials Research Express;2019-06-05
4. Preparation of Eu3+ doped LaAlO3 phosphors by coprecipitation-molten salt synthesis;Integrated Ferroelectrics;2018-03-24
5. White Light-Emitting Novel Nanophosphors for LED Applications;Nanomaterials for Green Energy;2018
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