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Increased downconversion efficiency and improved near infrared emission by different charge compensations in CaMoO_4:Yb~(3+) powders
引用本文:曹雪琴,魏涛,陈永虎,尹民,郭常新,张慰萍.Increased downconversion efficiency and improved near infrared emission by different charge compensations in CaMoO_4:Yb~(3+) powders[J].中国稀土学报(英文版),2011,29(11):1029-1035.
作者姓名:曹雪琴  魏涛  陈永虎  尹民  郭常新  张慰萍
作者单位:Department of Physics;University of Science and Technology of China;School of Mechanical and Electrical Engineering;Hefei University of Technology;
基金项目:Project supported by the National Natural Science Foundation of China (10774140,11074245,11011120083); Knowledge Innovation Project of the Chinese Academy of Sciences (KJCX2-YW-M11); Special Foundation for Talents of Anhui Province,China (2007Z021)
摘    要:All of the samples were synthesized by sol-gel methods.Two approaches to charge compensation,(i) 2Ca2+→Yb3++M+,where M+ is an alkali ion like Li+,Na+ and K+,and(ii) indirect charge compensation:3Ca2+→2Yb3++vacancy,were studied in detail.It was found that charge compensation would be very beneficial for the growth of the grains,especially in Li+ ions added samples.All the grains were homogeneously spherical with less boundaries;in addition,a great variety of the absorption ability in different charge compens...

关 键 词:电荷补偿  变频  粉末  碱性离子  YB  发射强度  吸收能力  能量转移
收稿时间:1 June 2011

Increased downconversion efficiency and improved near infrared emission by different charge compensations in CaMoO_4:Yb~(3+) powders
CAO Xueqin ,WEI Tao ,CHEN Yonghu ,YIN Min ,GUO Changxin ,ZHANG Weiping.Increased downconversion efficiency and improved near infrared emission by different charge compensations in CaMoO_4:Yb~(3+) powders[J].Journal of Rare Earths,2011,29(11):1029-1035.
Authors:CAO Xueqin  WEI Tao  CHEN Yonghu  YIN Min  GUO Changxin  ZHANG Weiping
Affiliation:CAO Xueqin 1,WEI Tao 2,CHEN Yonghu 1,YIN Min 1,GUO Changxin 1,ZHANG Weiping 1(1.Department of Physics,University of Science and Technology of China,Hefei 230026,China,2.School of Mechanical and Electrical Engineering,Hefei University of Technology,Hefei 230009,China)
Abstract:All of the samples were synthesized by sol-gel methods. Two approaches to charge compensation, (i) 2Ca2+→Yb3++M+, where M+ is an alkali ion like Li+, Na+ and K+, and (ii) indirect charge compensation: 3Ca2+→2Yb3++vacancy, were studied in detail. It was found that charge compensation would be very beneficial for the growth of the grains, especially in Li+ ions added samples. All the grains were homogeneously spherical with less boundaries; in addition, a great variety of the absorption ability in different charge compensation samples were observed: in comparison with the phosphors without charge compensation, indirectly charge compensated and Li+ ions added phosphors showed much stronger absorption strength in the ultraviolet (UV) region whereas that of Na+ and K+ ions added samples was much weaker; moreover, measurements of the emission intensities showed that: in comparison with the phosphors without charge compensation, the visible emission intensity from MoO42? decreased a lot in indirectly charge compensated and Li+ ions added phosphors, whereas there was a remarkable increase of the near infrared (NIR) emission intensity from Yb3+ ions in the two types of samples under 266 nm excitation, implying more efficient energy transfer (ET) from MoO42? to Yb3+ ions; at last, measurements and analysis of the decay curves of the visible 495 nm emission were carried out, and it was found that the energy transfer from MoO42? to Yb3+ ions were more efficient in the two above types of phosphors. The theoretical quantum cutting (QC) efficiency was also improved greatly. Overall, the addition of Li+ ions would be very beneficial for the morphology of the powders in addition to the growth of the grains. It was advantageous to increase the downconversion (DC) quantum efficiency; however, indirect charge compensation would enhance the NIR emission intensity to the most for its strongest absorption ability in the UV region.
Keywords:downconversion  molybdates  charge transfer  Yb3  rare earths  
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