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Green, orange, and red upconversion luminescence in Nd^(3+)/Yb^(3+): Cs_2NaGdCl_6 powders under 785 nm laser excitation
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作者 王殿元 郭艳艳 +1 位作者 吴杏华 张玉霞 《Journal of Rare Earths》 SCIE EI CAS CSCD 2008年第6期880-882,共3页
Nd^3+:Cs2NaGdCl6 and Nd^3+, Yb^3+:Cs2NaGdCl6 polycrystalline powder samples were prepared by Morss method E. Under 785 nm semiconductor laser pumping, the upconversion luminescence of Nd^3+ ions in Cs2NaGdCl6 wa... Nd^3+:Cs2NaGdCl6 and Nd^3+, Yb^3+:Cs2NaGdCl6 polycrystalline powder samples were prepared by Morss method E. Under 785 nm semiconductor laser pumping, the upconversion luminescence of Nd^3+ ions in Cs2NaGdCl6 was investigated at room temperature, and three upconversion emissions near 538 nm (Green), 603 nm (Orange), and 675 nm (Red) were observed and assigned to ^4G7/2→^4I9/2, (^4G7/2→^4I11/2; ^4G5/2→^4I9/2), and (^4G7/2→^4I13/2; ^4G5/2→^4I11/2 ), respectively. The dependences of these upconverted emissions on laser power and Nd^3+ ion concentration were investigated, to explore the upconversion mechanism. The effect of doping Yb^3+ ions on the upconversion luminescence of Nd^3+ in Cs2NaGdCl6 was also studied under 785 nm laser excitation. The energy transfer processes were discussed as the possible mechanism for the above upconversion emissions. 展开更多
关键词 upconversion luminescence energy transfer excited state absorption rare earths
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The theory and experiment of solute migration caused by excited state absorptions
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作者 金肖 王玉晓 +5 位作者 税敏 李常伟 杨俊义 张学如 杨昆 宋瑛林 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第1期382-387,共6页
Nonsymmetrical transition from reverse-saturable absorption (RSA) to saturable absorption (SA) caused by excited state absorption induced mass transport of the CuPcTs dissolved in dimethyl sulfoxide is observed in... Nonsymmetrical transition from reverse-saturable absorption (RSA) to saturable absorption (SA) caused by excited state absorption induced mass transport of the CuPcTs dissolved in dimethyl sulfoxide is observed in an open aperture Z-scan experiment with a 21-ps laser pulse. The nonsymmetrical transition from RSA to SA is ascribed neither to saturation of excited state absorption nor to thermal induced mass transport, the so-called Sorer effect. In our consideration, strong nonlinear absorption causes the rapid accumulation of the non-uniform kinetic energy of the solute molecules. The non-uniform kinetic field in turn causes the migration of the solute molecules. Additionally, an energy-gradient-induced mass transport theory is presented to interpret the experimental results, and the theoretical calculations are also taken to fit our experimental results. 展开更多
关键词 solute migration excited state absorption energy-gradient
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Investigation of the Spin Crossover Complex [Fe(bapbpy)(NCS)_2 ] in Its Low-spin and Highspin State by DFT/TD-DFT/BS-DFT Calculations 被引量:1
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作者 曲玉辉 黎乐民 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2013年第9期1279-1290,共12页
The spin crossover(SCO) compound [Fe(bapbpy)(NCS)2],where bapbpy contains two fused N,N-bis(2-pyridyl)amines,has been studied by DFT/TD-DFT/BS-DFT methods.Several density functionals and basis sets were used i... The spin crossover(SCO) compound [Fe(bapbpy)(NCS)2],where bapbpy contains two fused N,N-bis(2-pyridyl)amines,has been studied by DFT/TD-DFT/BS-DFT methods.Several density functionals and basis sets were used in the calculation to obtain optimized geometries of the compound in the low-(LS) and high-spin(HS) states.The vibrational modes and IR spectra,spin splitting energies,excited states and UV/Vis absorption spectra were obtained.The structural parameters of the calculated isolated complex are in good agreement with the X-ray data.We investigate three dimers of [Fe(bapbpy)(NCS)2] complex for their magnetic properties.It has been found that the complex(1,3) has ferromagnetic character while the others are antiferromagnetic in nature by using a broken symmetry approach in the DFT framework(BS-DFT) with support from the coupling constant values(J) and spin density plots. 展开更多
关键词 spin crossover DFT vibrations and IR spectra excited states and UV/vis absorption spectra coupling constant values(J)
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Upconversion of Er^(3+) Ions in LiKGdF_5:Er^(3+),Dy^(3+) Single Crystal Produced by Infrared and Green Laser
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作者 郭海 尹民 张慰萍 《Journal of Rare Earths》 SCIE EI CAS CSCD 2006年第6期740-744,共5页
The upconversion fluorescence of Er^3+ ions in LiKGdF5 : Er^3+, Dy^3+ single crystal was studied under 785, 514.5, and 980 nm laser excitation. With the laser excitation set at 785 nm, strong green (centered at 5... The upconversion fluorescence of Er^3+ ions in LiKGdF5 : Er^3+, Dy^3+ single crystal was studied under 785, 514.5, and 980 nm laser excitation. With the laser excitation set at 785 nm, strong green (centered at 543 nm) upconversion emissions, as well as weak red (651 nm), violet (406 nm), and blue (470 nm) upconversion emissions were obtained. With 514.5 nm laser excitation, violet (406 nm) and blue (470 nm) upconversion emissions were observed. Under 980 nm laser excitation, strong green (543 nm) and weak red (651) emissions were also obtained. The laser power dependence of the upconverted emissions was investigated to understand the upconversion mechanism. The excited state absorption (ESA) and the energy transfer (ET) processes were discussed as the possible mechanisms for all upconversion emissions. 展开更多
关键词 UPCONVERSION LiKGdF5:Er^3+ excited state absorption energy transfer rare earths
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