Efficient near-infrared luminescence and energy transfer in erbium/bismuth codoped zeolites

We have shown that tunable and highly efficient broadband near-IR (NIR) luminescence can be realized in erbium/bismuth codoped zeolites. The emission covers the ranges of 930-1450nm and 1450-1630nm. The intensity ratio of the two bands can be tuned by adjusting the concentration of erbium and the ex...

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Veröffentlicht in:Optics letters 2010-06, Vol.35 (11), p.1926-1928
Hauptverfasser: ZHENHUA BAI, SUN, Hong-Tao, HASEGAWA, Takashi, FUJII, Minoru, SHIMAOKA, Fumiaki, MIWA, Yuji, MIZUHATA, Minoru, HAYASHI, Shinji
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Sprache:eng
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Zusammenfassung:We have shown that tunable and highly efficient broadband near-IR (NIR) luminescence can be realized in erbium/bismuth codoped zeolites. The emission covers the ranges of 930-1450nm and 1450-1630nm. The intensity ratio of the two bands can be tuned by adjusting the concentration of erbium and the excitation wavelength. Steady-state and time-resolved photoluminescence (PL), and PL excitation measurements indicate that two kinds of emitters coexist in the pores of zeolites, and that NIR active bismuth simultaneously acts as a sensitizer of erbium. The present results demonstrate an important rational strategy for the design of a tunable NIR-emitting zeolite-based nanosystem.
ISSN:0146-9592
1539-4794
DOI:10.1364/ol.35.001926