Ab-initio DFT calculations and experimental investigations into optoelectronic and structural properties of Ca9Al(PO4)7:Sm3+ orange phosphor
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M. Mukherjee | H. Om | Mandeep Dalal | Aakanksha Agarwal | Kranti Jakhar | Vinod Kumar | Deepak Sharma | Manish Sharma
[1] H. Om,et al. Ca9Al(PO4)7:Tb3+—crystal configuration and judd–ofelt modelling of green emanating nanophosphor , 2022, Applied Physics A.
[2] Linsheng Wang,et al. A promising novel red-emitting Eu3+-activated neodymium calcium phosphate phosphor with good thermal stability and excellent color purity for WLEDs , 2021 .
[3] D. Kumar,et al. Structural and spectroscopic investigation of a novel orange-red Ca9Bi(PO4)7:Sm3+ nano-scaled phosphor , 2021 .
[4] A. Deshmukh,et al. Combustion assisted spectroscopic investigation of Dy3+ activated SrYAl3O7 phosphor for LED and TLD applications , 2021 .
[5] D. Kumar,et al. Single phase cool white light emitting novel Ca9Al(PO4)7:Dy3+ nanophosphor under NUV excitation , 2021, Journal of Materials Science: Materials in Electronics.
[6] Haidong Ju,et al. Synthesis, structure and optical properties of novel Li6Na3Sr14Al11P22O90:Sm3+/Dy3+ phosphors for solid-state lighting , 2021 .
[7] Mandeep Dalal,et al. Study of structural and luminescent characteristics of novel color tunable blue‐green Tb3+-doped Na3Y(PO4)2 nanoparticles for NUV-based WLEDs , 2021, Journal of Materials Science: Materials in Electronics.
[8] P. Boora,et al. Achieving orange red emission with high color purity from novel perovskite based Sr9Al6O18:Sm3+ nano-cubes for advanced optoelectronic applications , 2020 .
[9] Lixia Zhang,et al. Luminescent and thermal properties of novel orange-red emitting Ca2MgTeO6:Sm3+ phosphors for white LEDs , 2020 .
[10] Mandeep Dalal,et al. Ca9Gd(PO4)7:Sm3+—a novel single-phased down converting orange-red-emitting nanophosphor , 2020, Journal of Materials Science: Materials in Electronics.
[11] C. Ghanty,et al. Synthesis of novel Eu2+ activated K3Ca2(SO4)3F down-conversion phosphor for near UV excited white light emitting diode , 2020 .
[12] S. Khatkar,et al. Ba2YV3O11:Eu3+−Density functional and experimental analysis of crystal, electronic and optical properties , 2020 .
[13] H. Swart,et al. A review on the advancements in phosphor-converted light emitting diodes (pc-LEDs): Phosphor synthesis, device fabrication and characterization , 2020 .
[14] S. Khatkar,et al. A hybrid treatment of Ba2LaV3O11:Eu3+ nanophosphor system: First-principal and experimental investigations into electronic, crystal and the optical structure , 2019, Journal of Alloys and Compounds.
[15] S. Khatkar,et al. Crystal chemistry and optical analysis of a novel perovskite type SrLa2Al2O7:Sm3+ nanophosphor for white LEDs , 2019, Ceramics International.
[16] D. M. Jnaneshwara,et al. Bi2O3:Dy3+ nanophosphors: its white light emission and photocatalytic activity , 2019, SN Applied Sciences.
[17] H. Nagabhushana,et al. Effect of Bi3+ and Li+ co-doping on the luminescence properties of Zn2TiO4:Eu3+ nanophosphor for display applications , 2019, SN Applied Sciences.
[18] S. Khatkar,et al. Structural analysis and Judd-Ofelt parameterization of Ca9Gd(PO4)7:Eu3+ nanophosphor for solid-state illumination , 2019, Journal of Luminescence.
[19] G. Prakash,et al. Morphological and luminescence studies on KGdF4:Yb3+/Tb3+ up-conversion nanophosphors , 2018, Materials Chemistry and Physics.
[20] Bin Li,et al. Ca3Lu(GaO)3(BO3)4:Eu3+: A novel high-brightness and thermal-stable red-emitting phosphor for white LEDs , 2018, Journal of Luminescence.
[21] Ümit H. Kaynar,et al. Preparation and cathodoluminescence characteristics of rare earth activated BaAl2O4 phosphors. , 2018, Applied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine.
[22] Mukesh Kumar,et al. Energy transfer and photoluminescent analysis of a novel color-tunable Ba 2 Y 1-x V 3 O 11 : x Sm 3+ nanophosphor for single-phased phosphor-converted white LEDs , 2018, Ceramics International.
[23] Xiaoqing Ma,et al. Crystal structure and luminescence properties of a novel single-phase orange-red emitting phosphor Ca9La (PO4)7:Sm3+ , 2018, RSC advances.
[24] Chengyi Xu,et al. The photoluminescence, thermal properties and tunable color of Na1-xAl1+2xSi1-2xO4:xCe3+/Tb3+/Dy3+via energy transfer: a single-component multicolor-emitting phosphor. , 2017, Physical chemistry chemical physics : PCCP.
[25] H. Swart,et al. Potential of Sm 3+ doped LiSrVO 4 nanophosphor to fill amber gap in LEDs , 2017 .
[26] 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 .
[27] S. Khatkar,et al. Crystal structure and Judd-Ofelt properties of a novel color tunable blue-white-red Ba5Zn4Y8O21:Eu3+ nanophosphor for near-ultraviolet based WLEDs , 2017 .
[28] Bin Li,et al. Synthesis, photoluminescence, cathodoluminescence, and thermal properties of novel Tb3+-doped BiOCl green-emitting phosphors , 2017 .
[29] R. Ravikumar,et al. A novel orange emitting Sm3+ ions doped NaCaAlPO4F3 phosphor: Optical and luminescence properties , 2017 .
[30] Kamalakanta Behera,et al. Physicochemical study of nanoemulsions of aqueous cellulose acetate propionate, cellulose acetate butyrate and tween80 with castor, olive and linseed oils from temperature (293.15 to 313.15) K , 2017 .
[31] Jinyu Yang,et al. Tb-doped YPO4 phosphors: Polyacrylamide gel synthesis and optical properties , 2016 .
[32] C. Latouche,et al. Synthesis and Photoluminescence Properties of Ca2Ga2SiO7:Eu3+ Red Phosphors with an Intense 5D0→7F4 Transition. , 2016 .
[33] Kamalakanta Behera,et al. A comparative study on the effect of temperature on density, sound velocity and refractive index of nanoemulsions formed by castor, olive and linseed oils in aqueous cellulose acetate propionate and butyrate and Tween80 , 2016 .
[34] S. Khatkar,et al. Synthesis, photoluminescence features with intramolecular energy transfer and Judd–Ofelt analysis of highly efficient europium(III) complexes , 2016, Journal of Materials Science: Materials in Electronics.
[35] S. Khatkar,et al. Structural and photoluminescence investigations of Sm3+ doped BaY2ZnO5 nanophosphors , 2016 .
[36] Weiren Zhao,et al. Synthesis and Luminescence Studies of Sm3+ Doped Ca9Y(PO4)7 Orange-Red-Emitting Phosphor. , 2016, Journal of Nanoscience and Nanotechnology.
[37] S. Khatkar,et al. A promising novel orange–red emitting SrZnV 2 O 7 :Sm 3+ nanophosphor for phosphor-converted white LEDs with near-ultraviolet excitation , 2016 .
[38] Xinyang Huang. Preparation and luminescence characteristics of monazite Eu3+:LaPO4 nanocrystals in NH4NO3 molten salt , 2015 .
[39] Xuwu Zhang,et al. White light emission from Ca9Bi(PO4)7:Dy3+ single-phase phosphors for light-emitting diodes , 2015 .
[40] A. Salleo,et al. Multi-phase microstructures drive exciton dissociation in neat semicrystalline polymeric semiconductors , 2015 .
[41] Longtu Li,et al. Electronic structure, optical and dielectric properties of BaTiO3/CaTiO3/SrTiO3 ferroelectric superlattices from first-principles calculations , 2015 .
[42] Q. Pang,et al. Synthesis, photoluminescence and Judd–Ofelt analysis of red LiGd5P2O13 : Eu3+ phosphors for white LEDs , 2015 .
[43] S. Bindu,et al. Spectroscopic and radiative properties of Sm3+ ions in zinc borophosphate glasses , 2015 .
[44] Zhi-wei Zhang,et al. A novel red-emitting phosphor Ca9Bi(PO4)7:Eu3+ for near ultraviolet white light-emitting diodes , 2015 .
[45] D. Wang. Luminescence,Concentration Quenching and Thermal Stability of Ca_9Al(PO_4)_7:Eu~(2+) , 2015 .
[46] K. Horchani-Naifer,et al. Judd-Ofelt analysis and radiative properties of LiLa(1 x)Eux(PO3)4 , 2014 .
[47] Q. Su,et al. Luminescence properties of a new bluish green long-lasting phosphorescence phosphor Ca9Bi(PO4)(7):Eu2+,Dy3+ , 2014 .
[48] W. Zi,et al. Hydrothermal Synthesis of SrMoO4:Eu3+, Sm3+ Phosphors and Their Enhanced Luminescent Properties Through Energy Transfer , 2014, Journal of Electronic Materials.
[49] H. Swart,et al. A promising orange-red emitting nanocrystalline NaCaBO3:Sm3+ phosphor for solid state lightning , 2014 .
[50] Wei-Ren Liu,et al. A novel green-emitting SrCaSiAl2O7:Eu2+ phosphor for white LEDs , 2014 .
[51] W. Lu,et al. Sr3GdNa(PO4)3F:Eu2+,Mn2+: a potential color tunable phosphor for white LEDs , 2014 .
[52] B. Choi,et al. Photoluminescence characteristics of Sm3+ doped Ba3La(PO4)3 as new orange-red emitting phosphors , 2014 .
[53] Wei Liu,et al. Energy transfer and electron–phonon coupling properties in Gd2(WO4)3:Eu phosphor , 2013 .
[54] R. Mahiou,et al. Thermal quenching mechanisms of the Eu3+ luminescence in Ca9Al(PO4)7 obtained by citric route , 2013 .
[55] Z. Fu,et al. Solvothermal Synthesis and Luminescence Properties of BaCeF5, and BaCeF5: Tb3+, Sm3+ Nanocrystals: An Approach for White Light Emission , 2012 .
[56] J. Yu,et al. A novel strategy for controllable emissions from Eu3+ or Sm3+ ions co-doped SrY2O4:Tb3+ phosphors. , 2012, Physical chemistry chemical physics : PCCP.
[57] Chongfeng Guo,et al. Green-emitting phosphor Na2Gd2B2O7:Ce3+, Tb3+ for near-UV LEDs , 2012 .
[58] M. Jayasimhadri,et al. Photoluminescence and structural properties of Ca3Y(VO4)3:RE3+ (=Sm3+, Ho3+ and Tm3+) powder phosphors for tri-colors , 2011 .
[59] Baojiu Chen,et al. Concentration-dependent luminescence and energy transfer of flower-like Y2(MoO4)3:Dy3+ phosphor , 2011 .
[60] Hongquan Yu,et al. Optical transition, electron-phonon coupling and fluorescent quenching of La2(MoO4)3:Eu3+ phosphor , 2011 .
[61] Taiju Tsuboi,et al. Luminescence properties and site occupations of Eu3+ ions doped in double phosphates Ca9R(PO4)7 (R = Al, Lu) , 2011 .
[62] P. Du,et al. Photoluminescence properties of Y2O3:Tb3+ and YBO3:Tb3+ green phosphors synthesized by hydrothermal method , 2010 .
[63] F. Bright,et al. Noninvasive probing of aqueous Triton X-100 with steady-state and frequency-domain fluorometry , 2007 .
[64] F Auzel,et al. A fundamental self-generated quenching center for lanthanide-doped high-purity solids , 2002 .
[65] Matt Probert,et al. First-principles simulation: ideas, illustrations and the CASTEP code , 2002 .
[66] Kashinath,et al. Combustion synthesis , 2001 .
[67] G. Blasse. Energy transfer in oxidic phosphors , 1968 .