Synthesis, luminescence and photometric investigation of Sr2B2O5:Dy3+ phosphor for UV-based white LEDs
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H. Swart | A. K. Bedyal | M. Manhas | Vinay Kumar | Isha Charak | A. Vij
[1] M. Venkateswarlu,et al. Physical and spectroscopic studies of Sm3+ ions doped Alumino Tungsten Borate glasses for photonic applications , 2021, Radiation Physics and Chemistry.
[2] Jaehyuk Chang. Review—Application of Photoluminescent and Electroluminescent Metal-Organic Frameworks in White Light-Emitting Diodes , 2021, ECS Journal of Solid State Science and Technology.
[3] Shalendra Kumar,et al. Structural, diffuse reflectance and luminescence study of t-Mg2B2O5 nanostructures , 2021, Applied Physics A.
[4] H. Swart,et al. Structural and spectral studies of highly pure red-emitting Ca3B2O6:Eu3+ phosphors for white light emitting diodes , 2021, Journal of Alloys and Compounds.
[5] K. Poeppelmeier,et al. Borates: A Rich Source for Optical Materials. , 2020, Chemical reviews.
[6] P. Sriramachandran,et al. Structural, Vibrational, Optical and Improved Photoluminescence Properties of Dy3+ Doped Ca2KZn2V3O12 Phosphors , 2020, Journal of Inorganic and Organometallic Polymers and Materials.
[7] M. Jayasimhadri,et al. Tb3+ ion induced colour tunability in calcium aluminozincate phosphor for lighting and display devices , 2020 .
[8] Yuhua Wang,et al. A K3ScSi2O7:Eu2+ based phosphor with broad-band NIR emission and robust thermal stability for NIR pc-LEDs. , 2020, Chemical communications.
[9] R. Choudhary,et al. Structural and luminescence properties of laser assisted Eu3+ doped BaZrO3 thin films , 2019, Journal of Alloys and Compounds.
[10] D. P. Bisen,et al. Structural characterization and luminescence properties of Dy3+ doped Ca3MgSi2O8 phosphors , 2019, Journal of Alloys and Compounds.
[11] Panlai Li,et al. Luminescence and energy transfer of white emitting phosphor Ba3Ce(PO4)3: Dy3+ , 2018, Optik.
[12] Jagannathan Thirumalai,et al. Light-Emitting Diode - An Outlook On the Empirical Features and Its Recent Technological Advancements , 2018 .
[13] E. Erdoğmuş,et al. Investigation of luminescence properties of Pb2+-doped Sr2B2O5 phosphor , 2018 .
[14] H. Swart,et al. Blue photons excited highly chromatic red light emitting K3La(PO4)2:Pr3+ phosphors for white light emitting diodes , 2018, Materials Research Bulletin.
[15] Hongwei Guo,et al. Fabrication and characterization of strontium-doped borate-based bioactive glass scaffolds for bone tissue engineering , 2018 .
[16] Neharika,et al. Surface and spectral studies of Sm3+ doped Li4Ca(BO3)2 phosphors for white light emitting diodes , 2018 .
[17] H. Swart,et al. Radiative transition probability enhancement of white light emitting Dy3+ doped and K+ co-doped BaWO4 phosphors via charge compensation , 2018 .
[18] E. Homeyer,et al. A strategy to increase phosphor brightness: Application with Ce3+-doped Gd3Sc2Al3O12 , 2017 .
[19] H. Swart,et al. Synthesis, spectral and surface investigation of novel CaMgB2O5:Dy3+ nanophosphor for UV based white LEDs , 2017 .
[20] K. Jha,et al. Optimization of synthesis technique and luminescent properties in Eu3+-activated NaCaPO4 phosphor for solid state lighting applications , 2017 .
[21] E. Fred Schubert,et al. White light‐emitting diodes: History, progress, and future , 2017 .
[22] Marco Bettinelli,et al. Inorganic Phosphor Materials for Lighting , 2016, Topics in Current Chemistry.
[23] H. Seo,et al. Hydrothermal synthesis, characterization, and luminescence of Ca2B2O5:RE (RE = Eu3+, Tb3+, Dy3+) nanofibers , 2016, Journal of Nanoparticle Research.
[24] S. Dhoble,et al. Combustion synthesis of Sr2B2O5:Tb3+ green emitting phosphor for solid state lighting , 2016 .
[25] J. Manam,et al. Structural, optical and special spectral changes of Dy3+ emissions in orthovanadates , 2015 .
[26] H. Swart,et al. Review of rare earth activated blue emission phosphors prepared by combustion synthesis , 2015 .
[27] Zhi-wei Zhang,et al. Photoluminescence properties of a novel red emitting Ba₁₀F₂(PO ₄)₆:Eu³⁺ phosphor. , 2015, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[28] Zhi-wei Zhang,et al. Synthesis and luminescence properties of novel KSrPO4:Dy3+ phosphor , 2015 .
[29] Wei Gao,et al. A near-ultraviolet (NUV) converting green-yellow Ca2AlMg0.5Si1.5O7:Eu2+ phosphor for white light-emitting-diodes (w-LEDs) , 2014 .
[30] Yihua Hu,et al. Luminescence properties and energy transfer in the novel red emitting phosphors Ba2Ln(BO3)2Cl:Sm3+, Eu3+ (Ln=Y, Gd) , 2014 .
[31] Bertoldi Paolo,et al. Solid state lighting review – Potential and challenges in Europe , 2014 .
[32] Baodian Fan,et al. Luminescent properties of Sr2B2O5: Tm3+, Na+ blue phosphor , 2014 .
[33] J. McKittrick,et al. Review: Down Conversion Materials for Solid‐State Lighting , 2014 .
[34] R. Seshadri,et al. Phosphors for Solid-State White Lighting , 2013 .
[35] Vinay Kumar,et al. Synthesis, spectral and surface investigation of NaSrBO3: Sm3+ phosphor for full color down conversion in LEDs , 2013 .
[36] S. J. Dhoble,et al. Phosphate Phosphors for Solid-State Lighting , 2012 .
[37] Z. Xia,et al. Luminescence properties and energy transfer investigations of Sr2B2O5:Ce3+,Tb3+ phosphors , 2012 .
[38] H. Jiao,et al. A potential red-emitting phosphor CaSrAl2SiO7:Eu3+ for near-ultraviolet light-emitting diodes , 2012 .
[39] Hajime Yamamoto. Nitride Phosphors and Solid-State Lighting , 2011 .
[40] Ian Underwood,et al. Handbook of Visual Display Technology , 2011 .
[41] T. Depci,et al. Comparison of Different Synthesis Methods to Produce Lithium Triborate and Their Effects on Its Thermoluminescent Property , 2010 .
[42] C. Yeh,et al. Light Converting Inorganic Phosphors for White Light-Emitting Diodes , 2010, Materials.
[43] J. Nobbs. Kubelka—Munk Theory and the Prediction of Reflectance , 2008 .
[44] A. Yılmaz,et al. Investigation of thermoluminescence properties of metal oxide doped lithium triborate , 2007 .
[45] A. Hernandes,et al. Undoped and calcium doped borate glass system for thermoluminescent dosimeter , 2006 .
[46] D. Yuan,et al. Structure evaluation and highly enhanced luminescence of Dy3+ -doped ZnO nanocrystals by Li+ doping via combustion method. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[47] P. Schmidt,et al. Inorganic Luminescent Materials: 100 Years of Research and Application , 2003 .
[48] Tim Holland,et al. Unit cell refinement from powder diffraction data: the use of regression diagnostics , 1997, Mineralogical Magazine.
[49] S. Nakamura,et al. Candela‐class high‐brightness InGaN/AlGaN double‐heterostructure blue‐light‐emitting diodes , 1994 .
[50] J. Brian Gray,et al. On the use of regression diagnostics , 1989 .
[51] G. Blasse,et al. Energy transfer between inequivalent Eu2+ ions , 1986 .
[52] R. A. SMITH,et al. Physics of Semiconductors , 1960, Nature.