Blue-Pumped Deep Ultraviolet Lasing from Lanthanide-Doped Lu6O5F8 Upconversion Nanocrystals
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review
Author(s)
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Detail(s)
Original language | English |
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Article number | 1900968 |
Journal / Publication | Advanced Optical Materials |
Volume | 8 |
Issue number | 2 |
Online published | 6 Nov 2019 |
Publication status | Published - 17 Jan 2020 |
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Abstract
Deep ultraviolet (UV) lasers are essential for enormous use ranging from medical and life science to environmental and industrial applications. Herein, a class of blue-pumped microcavity lasers operating in the deep UV region is demonstrated by using Lu6O5F8:Pr/Gd@Lu6O5F8 upconversion nanocrystals as the gain medium. A hot-injection synthesis is developed for tuning dimensions of the Lu6O5F8 nanocrystals. By synthesizing large-sized nanocrystals and using inert shell coating, deep ultraviolet emission at 315 nm by blue excitation at 447 nm is realized for the first time in colloidal solutions. Mechanistic investigations suggest that the upconversion stems from sequential absorption of two blue photons by Pr3+ ions followed by energy transfer to Gd3+ emitters. By virtue of their small particle size and high dispersibility, the upconversion nanocrystals are readily incorporated into silica resin microcavities with a bottle-like geometry. Lasing emissions of tunable optical characteristics are achieved from the microcavities through the formation of whispering gallery modes. These findings pave the way for constructing compact lasers operating in the deep UV regime by pumping with sophisticated long-wavelength lasers.
Research Area(s)
- core–shell, microcavity lasers, oxyfluoride, upconversion nanocrystals, whispering gallery modes
Citation Format(s)
Blue-Pumped Deep Ultraviolet Lasing from Lanthanide-Doped Lu6O5F8 Upconversion Nanocrystals. / Du, Yangyang; Wang, Yunfeng; Deng, Zhiqin et al.
In: Advanced Optical Materials, Vol. 8, No. 2, 1900968, 17.01.2020.
In: Advanced Optical Materials, Vol. 8, No. 2, 1900968, 17.01.2020.
Research output: Journal Publications and Reviews › RGC 21 - Publication in refereed journal › peer-review