Energy transfer process from Zn1-xMnxTe nanocrystals to Eu3+ ions embedded in host glass

被引:2
|
作者
Silva, Alessandra S. [1 ]
Silva, Wesley S. [2 ]
Sales, Tasso O. [2 ]
Jacinto, Carlos [2 ]
Silva, Ricardo S. [1 ]
Dantas, Noelio O. [3 ]
机构
[1] Univ Fed Triangulo Mineiro, Inst Ciencias Exatas Nat & Educ ICENE, Dept Fis, BR-38025180 Uberaba, MG, Brazil
[2] Univ Fed Alagoas, Inst Fis, Grp Nanophoton & Imaging, BR-57072900 Maceio, Brazil
[3] Univ Fed Alagoas, Inst Fis, Lab Novos Mat Nanoestruturados & Funcionais LNMNF, BR-57072900 Maceio, Brazil
关键词
Energy transfer process; Eu3+ ions; Mn2+ ions; Zn1-xMnxTe; Nanocrystals; MN2+; EMISSION; FLUORESCENCE; LUMINESCENCE; TEMPERATURE;
D O I
10.1016/j.jlumin.2022.119589
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
P2O5-ZnO -Al2O3 - BaO - PbO phosphate glass system, doped with Zn1-xMnxTe nanocrystals (NCs) and with Eu2O3 (1 wt %) were successfully prepared. All samples were characterized with transmission electron microscopy (TEM), electron paramagnetic resonance (EPR), optical absorption (OA), photoluminescence (PL) and lifetime. TEM images confirm the formation of Zn1-xMnxTe NCs and EPR spectra confirm the substitutional incorporation of Mn2+ ions in these NCs. The overlap between the Mn(2+ )ion emission band (T-4(1) [(4)G] ->(6)A(1 )[S-6] transition) and the Eu3+ ion absorption bands (F-7(0) -> D-5(0,1)) suggests energy transfer (ET) from Mn2+ to Eu3+ ions. This ET phenomenon has been confirmed by PL spectra and decay curves, since the doping with Eu2O3 cause the decay of Mn2+ emission intensity when comparing with the emission of the Zn0.99Mn0.01Te sample, as well as of the T-4(1) ((4)G) state lifetime. These results indicate that the said glass system can be potential candidates for use in various technological applications.
引用
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页数:6
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