Near UV-light excitable SrAl2O4:Eu3+ nanophosphors for display device applications
暂无分享,去创建一个
H. B. Premkumar | H. Nagabhushana | G. Darshan | R. Basavaraj | B. Daruka Prasad | K. Ashwini | B. D. Prasad
[1] H. Swart,et al. A review on the advancements in phosphor-converted light emitting diodes (pc-LEDs): Phosphor synthesis, device fabrication and characterization , 2020 .
[2] B. C. Jamalaiah,et al. UV excited SrAl2O4:Tb3+ nanophosphors for photonic applications , 2020 .
[3] A. Kato,et al. Effect of Eu doping on room temperature phase and phase transition of Sr2SiO4:Eu2+ phosphor synthesized by polymerized complex method , 2019, Journal of Physics and Chemistry of Solids.
[4] S. C. Sharma,et al. Rational design of monovalent ions (Li, Na, K) co-doped ZnAl2O4:Eu3+ nanocrystals enabling versatile robust latent fingerprint visualization , 2019, Journal of Rare Earths.
[5] V. Chernov,et al. Thermoluminescence and infrared stimulated luminescence in long persistent monoclinic SrAl2O4:Eu2+,Dy3+ and SrAl2O4:Eu2+,Nd3+ phosphors , 2019, Optical Materials.
[6] S. Rai,et al. Latent Fingerprint Imaging Using Dy and Sm Codoped HfO2 Nanophosphors: Structure and Luminescence Properties , 2019, Particle & Particle Systems Characterization.
[7] Xiaolan Liu,et al. The red persistent luminescence of (Sr,Ca)AlSiN3:Eu2+ and mechanism different to SrAl2O4:Eu2+,Dy3+ , 2019, Journal of Luminescence.
[8] S. C. Sharma,et al. Antimicrobial properties of green synthesis of MgO micro architectures via Limonia acidissima fruit extract , 2019, Biocatalysis and Agricultural Biotechnology.
[9] O. Pandey,et al. The effect of templates on the morphological and optical properties of BaMgAl10O17:Eu2+ phosphors , 2019, Vacuum.
[10] H. Nagabhushana,et al. Pivotal role of fluxes in BaTiO3:Eu3+ nano probes for visualization of latent fingerprints on multifaceted substrates and anti-counterfeiting applications , 2019, Microchemical Journal.
[11] B. C. Jamalaiah,et al. Tunable luminescence properties of SrAl2O4: Eu3+ phosphors for LED applications , 2019, Journal of Molecular Structure.
[12] H. B. Premkumar,et al. Evolution of shapes and identification of level II and III features of fingerprints using CaZrO3:Sm3+ fluorescent markers prepared via solution combustion route , 2019, Optical Materials.
[13] S. C. Sharma,et al. Rapid visualization of latent fingerprints using novel CaSiO3:Sm3+ nanophosphors fabricated via ultrasound route , 2019, Journal of Rare Earths.
[14] H. Nagabhushana,et al. Rapid identification of latent fingerprints, security ink and WLED applications of CaZrO3:Eu3+ fluorescent labelling agent fabricated via bio-template assisted combustion route , 2018, Journal of Alloys and Compounds.
[15] H. Nagabhushana,et al. Multifunctional Dy (III) doped di-calcium silicate array for boosting display and forensic applications , 2018, Journal of Rare Earths.
[16] Sung Jun Park,et al. The effective fingerprint detection application using Gd2Ti2O7:Eu3+ nanophosphors , 2018 .
[17] Jing Cao,et al. Metastable scheelite CdWO4:Eu3+ nanophosphors: Solvothermal synthesis, phase transitions and their polymorph-dependent luminescence properties , 2017 .
[18] S. C. Sharma,et al. Red and green emitting CTAB assisted CdSiO3:Tb3+/Eu3+ nanopowders as fluorescent labeling agents used in forensic and display applications , 2017 .
[19] C. K. Jayasankar,et al. Structure, morphology and optical characterization of Dy 3+ -doped BaYF 5 nanocrystals for warm white light emitting devices , 2017 .
[20] S. C. Sharma,et al. Ultrasound assisted rare earth doped Wollastonite nanopowders: Labeling agent for imaging eccrine latent fingerprints and cheiloscopy applications , 2017 .
[21] H. Swart,et al. Charge compensated derived enhanced red emission from Sr3(VO4)2:Eu3+ nanophosphors for white light emitting diodes and flat panel displays , 2017 .
[22] J. Fukushima,et al. Synthesis and photoluminescence properties of Mn4+-doped magnetoplumbite-related aluminate X-type Ca2Mg2Al28O46 and W-type CaMg2Al16O27 red phosphors , 2017 .
[23] J. Yu,et al. Evolution of CaGd2ZnO5:Eu3+ nanostructures for rapid visualization of latent fingerprints , 2017 .
[24] Yanyan Li,et al. Preparation, crystal structure and photoluminescence properties of Ce3+ activated Ba3Y1_yLuyAl2O7.5 phosphors for near-UV LEDs , 2017 .
[25] H. Nagabhushana,et al. Sonochemically assisted hollow/solid BaTiO3:Dy3+ microspheres and their applications in effective detection of latent fingerprints and lip prints , 2017 .
[26] D. P. Bisen,et al. Luminescence studies on the europium doped strontium metasilicate phosphor prepared by solid state reaction method , 2017 .
[27] D. P. Bisen,et al. Studies on the luminescence properties of CaZrO3:Eu3+ phosphors prepared by the solid state reaction method , 2017 .
[28] M. Ge,et al. Effect of red emitting fluorescent pigment on fluorescent color of SrAl2O4:Eu2+,Dy3+ phosphors , 2017 .
[29] S. C. Sharma,et al. Mimosa pudica mediated praseodymium substituted calcium silicate nanostructures for white LED application , 2017 .
[30] H. Nagabhushana,et al. Zinc silicates with tunable morphology by surfactant assisted sonochemical route suitable for NUV excitable white light emitting diodes. , 2017, Ultrasonics sonochemistry.
[31] K. K. Gupta,et al. Photoluminescence, thermoluminescence and evaluation of some parameters of Dy3+ activated Sr5(PO4)3F phosphor synthesized by sol-gel method , 2016 .
[32] J. Thirumalai. The Impact of Luminescence in Technological Scale , 2016 .
[33] Jinkai Li,et al. Development of Tb3+ activated gadolinium aluminate garnet (Gd3Al5O12) as highly efficient green-emitting phosphors , 2016 .
[34] N. Külcü,et al. Luminescence and thermoluminescence properties of a red emitting phosphor, Sr4Al14O25:Eu3+ , 2016 .
[35] Pramod K. Singh,et al. EPR and optical properties of Eu2+ and Mn2+ co-doped MgSrAl10O17 blue–green light emitting powder phosphors , 2016 .
[36] S. C. Sharma,et al. Green synthesis, structural characterization and photoluminescence properties of Sm3+ co-doped Y2SiO5:Ce3+ nanophosphors for wLEDs , 2016 .
[37] K. Mondal,et al. Influence of doping and annealing temperature on the structural and optical properties of Mg2SiO4:Eu3+ synthesized by combustion method , 2016 .
[38] Xiaolin Liu,et al. Synthesis and photoluminescence properties of Ba3Al2O6:Eu3+ red phosphor , 2016, Journal of Materials Science.
[39] H. Nagabhushana,et al. A single host white light emitting Zn2SiO4:Re3+ (Eu, Dy, Sm) phosphor for LED applications , 2015 .
[40] K. Binnemans. Interpretation of europium(III) spectra , 2015 .
[41] Quan Yuan,et al. Near-infrared-light-mediated imaging of latent fingerprints based on molecular recognition. , 2014, Angewandte Chemie.
[42] A. McDonagh,et al. Fingermark detection on non-porous and semi-porous surfaces using NaYF4:Er,Yb up-converter particles. , 2011, Forensic science international.
[43] C. Shi,et al. Potential white-light long-lasting phosphor: Dy3+-doped aluminate , 2005 .
[44] C. McCamy,et al. Correlated color temperature as an explicit function of chromaticity coordinates , 1992 .
[45] G. Blasse,et al. Energy transfer between inequivalent Eu2+ ions , 1986 .
[46] T. Haley,et al. Pharmacology and toxicology of europium chloride. , 1965, Journal of pharmaceutical sciences.
[47] K. P. Dubois,et al. THE ACUTE MAMMALIAN TOXICITY OF RARE EARTH NITRATES AND OXIDES. , 1963, Toxicology and applied pharmacology.
[48] D. L. Dexter. A Theory of Sensitized Luminescence in Solids , 1953 .