Search Results - "Pan, Shangke"
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1
Synthesis, crystal structure and optical property of manganese (II) halides based on pyridine ionic liquids with high quantum yield
Published in Transition metal chemistry (Weinheim) (01-09-2020)“…Two novel tetrahedral Mn (II) halide single-crystals [(C 7 H 10 N) 2 ][MnCl 4 ] ( 1 ) and [(C 7 H 10 N) 2 ][MnBr 4 ] ( 2 ), based on pyridine ionic liquids,…”
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2
Crystal growth and luminescence characterizations of halide scintillators K2LaBr5:Eu2
Published in Journal of crystal growth (01-09-2022)“…•K2LaBr5:Eu2+ single crystal was obtained successfully by vertical Bridgman method without flux for the first time.•The luminescence phenomenon of K2LaBr5:Eu2+…”
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3
Growth, luminescence and scintillation properties of Pr3+, Ce3+ co-doped Li6Y(BO3)3 crystal
Published in Radiation measurements (01-05-2019)“…Pr:Li6Y(BO3)3 and Pr,Ce:Li6Y(BO3)3 crystals were grown by the Czochralski method. The luminescence properties of the Pr:Li6Y(BO3)3 and Pr,Ce:Li6Y(BO3)3…”
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4
Growth and optimized scintillation properties of Ce:Li6Lu1-xYx(BO3)3 mixed crystals
Published in Journal of alloys and compounds (30-10-2018)“…Ce:Li6Lu1-xYx(BO3)3 (x = 0.08, 0.2, 0.4, 0.6, 0.8) mixed crystals were grown by Czochralski method to optimize the scintillation properties of lithium rare…”
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5
Effects of scandium on the bandgap and location of Ce3+ levels in Lu1−xScxBO3:Ce scintillators
Published in Applied physics letters (09-01-2012)“…Transparent Lu1−xScxBO3:Ce (x = 0.3, 0.5, 0.7, 0.8) scintillation crystals were grown by Czochralski method. Vacuum ultraviolet excitation spectra and…”
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6
Crystal Growth, Luminescence and Scintillation Characterizations of Cs2KLaCl6:Ce and Cs2KCeCl6
Published in Crystals (Basel) (01-06-2021)“…Elpasolite halides scintillation crystals have been proven to be very important materials for X-ray and γ-ray detector applications. The crystals of…”
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7
Cerium concentration and temperature dependence of the luminescence of Lu2Si2O7:Ce scintillator
Published in Journal of alloys and compounds (03-03-2011)“…▶ In this study, we investigate the cerium doping concentration and temperature dependence the luminescence of Lu2Si2O7:Ce. ▶ We examine the absorption,…”
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8
The influence of Sc/Lu ratio on the phase transformation and luminescence of cerium-doped lutetium scandium orthoborate solid solutions
Published in Journal of alloys and compounds (12-01-2011)“…▶ Doping more than 10 at.% Sc 3+ can stabilize calcite phase of LuBO 3 up to 1550 °C. ▶ Luminescence properties of Lu 1− x Sc x BO 3:Ce solid solutions depend…”
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9
Scintillation Characteristics of Indium Doped Cesium Iodide Single Crystal
Published in IEEE transactions on nuclear science (01-04-2015)“…Indium doped cesium iodide (CsI:In) single crystals were grown by the Bridgman method. A comparison study of the scintillation properties of our CsI:In and…”
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10
Neutron detection properties of Li6Y(BO3)3:Ce crystal
Published in Radiation measurements (01-01-2015)“…Li6Y(BO3)3:Ce crystal is a promising type of scintillator for neutron detection. In this study, the properties of Li6Y(BO3)3:3at%Ce are studied, including its…”
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11
Growth and luminescence characteristics of cerium-doped yttrium pyrosilicate single crystal
Published in Journal of alloys and compounds (21-01-2010)“…Yttrium pyrosilicate (Y 2Si 2O 7, YPS) is an incongruent compound and has five (or possibly six) different structural forms from 1535 to 1225 °C. It should be…”
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12
Seed-mediated direct growth of CdSe nanoclusters on substrates
Published in Journal of nanoparticle research : an interdisciplinary forum for nanoscale science and technology (2013)“…Different shapes of CdSe nanostructures were obtained by hydrothermal method with varied Se sources and buffer layers. Hexagonal nanoparticles of CdSe with…”
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13
Ultralow-concentration Sm codoping in CsI:Tl scintillator: A case of little things can make a big difference
Published in Optical materials (01-12-2014)“…•The effects of ultralow-concentration Sm codoping on the scintillation characteristics of CsI:Tl were investigated.•Afterglow was dramatically lowered while…”
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14
Growth problems, thermal expansion and scintillation properties of Ce:Li6Lu(BO3)3 crystals under thermal neutron excitation
Published in Journal of crystal growth (01-09-2014)“…The problems of the growth of Ce:Li6Lu(BO3)3 (LLBO) crystal using Czochralski technique have been discussed. The supercooling, cleavage crack and inversion of…”
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Journal Article Conference Proceeding -
15
The luminescence and energy transfer in Pr3+―Ce3+ co-doped Lu0.8SC0.2BO3 crystals
Published in Journal of luminescence (01-02-2012)Get full text
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16
Luminescence and point defects in cerium-doped lutetium scandium orthoborate crystals
Published in Applied physics. A, Materials science & processing (01-09-2011)“…Cerium-doped lutetium scandium orthoborate single crystals as potential scintillation materials were grown by the floating zone (FZ) method for the first time…”
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Effects of scandium substitution on the crystal structure and luminescence properties of LuBO3: Ce3
Published in Journal of solid state chemistry (01-10-2012)“…The calcite phase of LuBO3 and ScBO3 polycrystalline powders were synthesized by solid state reaction method, and the Lu1−xScxBO3:Ce (x=0.2, 0.5, 0.7) single…”
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Study of the effects of Ga3+ co-doping on the Lu0.8Sc0.2BO3:Ce scintillation crystals
Published in Journal of crystal growth (15-02-2012)“…Transparent Lu0.8Sc0.2BO3 crystals doped with 1at%Ce3+ and co-doped with 1at% and 3at%Ga3+ were grown by the Czochralski method. We applied absorption…”
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19
Can divalent ions co-doping strategy make Lu0.8Sc0.2BO3:Ce scintillation materials perform better?
Published in Optical materials (01-01-2013)“…► No positive contribution of the Me2+ ions on the scintillation efficiency was found. ► Parasite emission located around 380–400nm for certain Me2+ co-doping…”
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Journal Article -
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The annealing effects of Lu0.8Sc0.2BO3:Pr3+ scintillation crystal within different atmospheres
Published in Solid state sciences (01-05-2012)“…The air-annealing effects on Lu0.8Sc0.2BO3:Pr3+ crystals grown by Czochralski method (Cz-method) were studied at different temperatures. Its scintillation…”
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