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ÖÁ×ðľ³æ (ÖøÃûдÊÖ)
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°®ÓëÓêÏÂ: ½ð±Ò+1 2015-05-18 18:53:22
xsysunjuan(RXMCDM´ú·¢): ½ð±Ò+5 2015-10-17 08:27:15
°®ÓëÓêÏÂ: ½ð±Ò+1 2015-05-18 18:53:22
xsysunjuan(RXMCDM´ú·¢): ½ð±Ò+5 2015-10-17 08:27:15
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Zinc oxide nanoparticles powder doped with Y3 + (1%) and Eu3 + (1%), either singlely or 1:1 mixture, respectively, were prepared by co-precipitation method from Znc (NO3) 2 and anhydrous (Na) 2 CO3 as raw materials. The powder morphology, phase composition and the photoluminescence properties of these nano composites were characterized with XRD, TEM and fluorescence spectrometer methods, respectively. Results show that the the vast majority of the doped yttrium and europium entered the ZnO lattice, and the doping did not change the crystal structure of ZnO nanoparticles. There were reduction in particle sizes and the luminous intensity, which is more apparent in yttrium-doped than europium-doped. For nano ZnO doped with the mixture at 1:1 proportion, the weakening effect is in the middle of that of individually doped. The peak value of infrared absorption for Y3+-doped zinc oxide increased, while the peak value of infrared absorption for Eu3+ -doped zinc oxide decreased, indicating that the Y3 + has better absorption effect. For the co-doped ZnO, Eu elements plays a catalytic role to a certain extent, reduces the dominant effect of Y3+ to zinc oxide, thus reduces the absorption value in infrared wavelengths. Key words: nano ZnO; Y/Eu; Co-precipitation method; Photoluminescence properties |

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