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Excitation wavelength dependent luminescence properties for Eu3+-activated Ba2Gd2Si4O13 phosphor
Zhang, F; Li, GQ; Huang Y(黄艳); Tao Y(陶冶); Huang, Y; Tao, Y
2015
Source PublicationJOURNAL OF MATERIALS SCIENCE
ISSN0022-2461
EISSN1573-4803
Volume50Issue:13Pages:4772-4778
SubtypeArticle
AbstractThe tunable spectroscopy properties of Eu3+-activated Ba2Gd2Si4O13 phosphors under different wavelengths from vacuum ultraviolet (VUV) to ultraviolet region have been demonstrated. From the emission spectra, a broad band centered at 410 nm can be observed by choosing the suitable excitation wavelength, which is determined to be the defects produced under high temperature. Based on the result, the phosphor shows a tunable emission depending on the excitation source and the concentration of Eu3+. In addition, the VUV photoluminescence property of a series of Ba2Gd2Si4O13:Eu3+ indicates that the optimal sample is Ba2Gd1.9Si4O13:5 %Eu3+ whose emitting color and decay time is beneficial for the application compared to the value for the commercial red-emitting phosphor.
Subject AreaMaterials Science
DOI10.1007/s10853-015-9031-z
Indexed BySCI ; ADS ; EI
Language英语
WOS Research AreaMaterials Science, Multidisciplinary
WOS SubjectMaterials Science
WOS IDWOS:000354093500030
ADS Bibcode2015JMatS..50.4772Z
ADS URLhttps://ui.adsabs.harvard.edu/abs/2015JMatS..50.4772Z
ADS CITATIONShttps://ui.adsabs.harvard.edu/abs/2015JMatS..50.4772Z/citations
Citation statistics
Cited Times:6 [ADS]
Document Type期刊论文
Identifierhttp://ir.ihep.ac.cn/handle/311005/228524
Collection多学科研究中心
Recommended Citation
GB/T 7714
Zhang, F,Li, GQ,Huang Y,et al. Excitation wavelength dependent luminescence properties for Eu3+-activated Ba2Gd2Si4O13 phosphor[J]. JOURNAL OF MATERIALS SCIENCE,2015,50(13):4772-4778.
APA Zhang, F,Li, GQ,黄艳,陶冶,Huang, Y,&Tao, Y.(2015).Excitation wavelength dependent luminescence properties for Eu3+-activated Ba2Gd2Si4O13 phosphor.JOURNAL OF MATERIALS SCIENCE,50(13),4772-4778.
MLA Zhang, F,et al."Excitation wavelength dependent luminescence properties for Eu3+-activated Ba2Gd2Si4O13 phosphor".JOURNAL OF MATERIALS SCIENCE 50.13(2015):4772-4778.
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