Tunable Visible Light and Energy Transfer Mechanism in Tm3+ and Silver Nanoclusters within Co-Doped GeO2-PbO Glasses

被引:1
|
作者
Nishimura, Marcos Vinicius de Morais [1 ]
Amaro, Augusto Anselmo [1 ]
Bordon, Camila Dias da Silva [1 ]
Dipold, Jessica [2 ]
Wetter, Niklaus Ursus [2 ]
Kassab, Luciana Reyes Pires [3 ]
机构
[1] Univ Sao Paulo, Dept Engn Sistemas Eletron, Escola Politecn, Av Prof Luciano Gualberto 158,Travessa 3, BR-05508900 Sao Paulo, SP, Brazil
[2] IPEN CNEN, Inst Pesquisas Energet & Nucl, 2242 Av Prof Lineu Prestes, BR-05508000 Sao Paulo, SP, Brazil
[3] CEETEPS, Fac Tecnol Sao Paulo, Praca Cel Fernando Prestes 30, BR-01124060 Sao Paulo, SP, Brazil
关键词
germanate glasses; silver nanoclusters; rare-earth ions; Thulium ions; tunable luminescence; melt-quenching technique; AG NANOCLUSTERS; FLUOROPHOSPHATE GLASSES; OXYFLUORIDE GLASS; WHITE-LIGHT; LUMINESCENCE PROPERTIES; MULTICOLOR EMISSION; IONS; YB3+; EU; NANOPARTICLES;
D O I
10.3390/mi14112078
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This study introduces a novel method for producing Ag nanoclusters (NCs) within GeO2-PbO glasses doped with Tm3+ ions. Sample preparation involved the melt-quenching method, employing adequate heat treatment to facilitate Ag NC formation. Absorption spectroscopy confirmed trivalent rare-earth ion incorporation. Ag NC identification and the amorphous structure were observed using transmission electron microscopy. A tunable visible emission from blue to the yellow region was observed. The energy transfer mechanism from Ag NCs to Tm3+ ions was demonstrated by enhanced 800 nm emission under 380 and 400 nm excitations, mainly for samples with a higher concentration of Ag NCs; moreover, the long lifetime decrease of Ag NCs at 600 nm (excited at 380 and 400 nm) and the lifetime increase of Tm3+ ions at 800 nm (excitation of 405 nm) corroborated the energy transfer between those species. Therefore, we attribute this energy transfer mechanism to the decay processes from S-1 -> T-1 and T-1 -> S-0 levels of Ag NCs to the H-3(4) level of Tm3+ ions serving as the primary path of energy transfer in this system. GeO2-PbO glasses demonstrated potential as materials to host Ag NCs with applications for photonics as solar cell coatings, wideband light sources, and continuous-wave tunable lasers in the visible spectrum, among others.
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页数:14
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