Search Results - "Dhoble, N.S."
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A review on optical and photoluminescence studies of RE3+ (RE=Sm, Dy, Eu, Tb and Nd) ions doped LCZSFB glasses
Published in Renewable & sustainable energy reviews (01-11-2015)“…Trivalent rare earth ions show interesting optical properties and such properties have high technological applications of rare earth doped materials such as…”
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Versatility of thermoluminescence materials and radiation dosimetry – A review
Published in Luminescence (Chichester, England) (01-11-2019)“…Thermoluminescence (TL) materials exhibit a wide range of applications in different areas such as personal dosimetry, environmental dosimetry, medical research…”
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Spectroscopic and energy transfer analysis in Dy3+/Eu3+ activated/co-activated LiNaSO4 phosphors: Structural and optical properties
Published in Results in Chemistry (01-12-2023)“…[Display omitted] •LiNaSO4: Dy3+, Eu3+ co-activated phosphor has been prepared by simple combustion synthesis.•Crystal structure of proposed phosphor has been…”
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A comparative investigation of Ce3+/Dy3+ and Eu2+ doped LiAlO2 phosphors for high dose radiation dosimetry: Explanation of defect recombination mechanism using PL, TL and EPR study
Published in Journal of luminescence (01-08-2017)“…This study describes a comparative analysis of γ-ray irradiated thermoluminescence properties of Ce3+/Dy3+ and Eu2+ doped LiAlO2 phosphor. LiAlO2:…”
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Photoluminescence, thermoluminescence and evaluation of some parameters of Dy3+ activated Sr5(PO4)3F phosphor synthesized by sol-gel method
Published in Journal of alloys and compounds (15-12-2016)“…In this study, we have synthesized Dy3+ activated Sr5(PO4)3F (S-FAP) phosphors by sol-gel synthesis method. The synthesized phosphors were characterized by…”
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Photoluminescence and thermoluminescence study of Ca1.02Sr1.98Al2O6: Dy phosphor synthesized by combustion method
Published in Materials letters. X (01-06-2023)“…•Ca1.02Sr1.98Al2O6:Dy3+ (1.0 mol% to 5.0 mol %) phosphors were synthesized by combustion method.•The photoluminescence and thermoluminescence properties of the…”
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Rare earth (Eu2+,Ce3+) activated BaAl2Si2O8 blue emitting phosphor
Published in Journal of rare earths (01-07-2014)“…Blue emitting rare earth (Eu2+,Ce3+) doped BaAl2Si2O8 phosphors were synthesized by combustion methods at 600 °C. BaAl2Si2O8: Eu2+ phosphor showed isolated…”
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Improvement of self-activated luminescence properties of Ca2KZn2(VO4)3 down-conversion materials by SSR method based on co-doped Eu3+,Dy3+ rare earth ions concentrations
Published in Journal of molecular structure (15-09-2022)“…•A novel self-activated Ca2KZn2(VO4)3:Eu3+, Dy3+ crystalline phosphor were synthesized via solid state reaction.•All the samples can be excited by NUV light…”
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Photoluminescence and thermoluminescence characteristics of CaAl2Si4O12:Dy3+new phosphor prepared by combustion synthesis
Published in Journal of molecular structure (05-03-2021)“…•CaAl2Si4O12doped with dysprosium (Dy3+) novel phosphor were synthesized by the combustion method with PL and TL study reported first time.•4F9/2→6H13/2and…”
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Tunable luminescence of Eu3+, Sm3+ and Dy3+ doped Na2CaMg(PO4)2 phosphor for optical applications
Published in Journal of molecular structure (05-01-2020)“…In this work Na2CaMg(PO4)2 and Na2CaMg(PO4)2-x(SO4)x doped with europium, samarium and dysprosium phosphors were synthesized by combustion method using urea as…”
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Thermoluminescence study of sodium aluminosilicate phosphors
Published in Journal of molecular structure (05-02-2021)“…•Sodium aluminosilicates NaAlSi2O6: Dy and Na6Al6Si10O32: Eu synthesized by Combustion method.•Thermoluminescence study of NaAlSi2O6: Dy and Na6Al6Si10O32: Eu…”
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Influence of rare earth ions on luminescent properties of self-emitting KCa2Mg2(VO4)3 phosphors for lighting application
Published in Optik (Stuttgart) (01-11-2022)“…The influence of rare earth (RE) ions on the photoluminescence (PL) properties of self-emitting KCa2Mg2(VO4)3 phosphors were studied in detail. In this…”
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Novel photoluminescence properties of Eu3+ doped chlorapatite phosphor synthesized via sol-gel method
Published in Materials research bulletin (01-01-2018)“…[Display omitted] •Ca9.97(PO4)Cl1.94:Eu3+ compound was synthesized by sol-gel synthesis method.•Photoluminescence properties of Ca9.97(PO4)Cl1.94:Eu3+ compound…”
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Synthesis of novel Eu2+ activated K3Ca2(SO4)3F down-conversion phosphor for near UV excited white light emitting diode
Published in Journal of molecular structure (15-07-2020)“…In the present paper, we have successfully synthesized Eu2+ activated K3Ca2(SO4)3F phosphor by two-step solid-state reaction method at high temperature…”
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Short review on recent progress in Mn4+‐activated oxide phosphors for indoor plant light‐emitting diodes
Published in Luminescence (Chichester, England) (01-05-2021)“…In the modern era, growing number of indoor plants for various purposes, such as vegetation, flowering, and decorations, has increased over the traditional…”
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Novel photoluminescence properties of Eu 3+ doped chlorapatite phosphor synthesized via sol-gel method
Published in Materials research bulletin (01-01-2018)Get full text
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Near UV excited multi-color photoluminescence in RE3+ (RE=Tb, Sm, Dy and Eu) doped Ca2Pb3(PO4)3Cl phosphors
Published in Journal of luminescence (01-11-2019)“…The Ca2Pb3(PO4)3Cl: RE3+ (RE = Tb, Sm, Dy and Eu) phosphor materials were prepared by wet chemical method. The synthesized phosphors were analyzed by using…”
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Tunable emission, energy transfer and cation substitution in the Li2Sr2Al(PO4)3:Dy3+, Eu3+, Na+ phosphor for WLEDs application
Published in Materials today communications (01-12-2023)“…The current investigation deals with the synthesis and characterization of the singly, double and triple ions (Dy3+, Eu3+, Na+) co-doped Li2Sr2Al(PO4)3…”
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Enhanced photoluminescence in RE (Eu3+, Ce3+ and Sm3+)‐activated Ca10(PO4)F2 phosphors by double or triple ionized mineral doping: a comparative study
Published in Luminescence (Chichester, England) (01-05-2021)“…In this work, RE3+ (Eu, Ce and Sm)‐activated Ca10(PO4)6F2 (fluorapatite) phosphors were synthesized by doping with different apatite minerals (SO4, VO4, WO4)…”
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