Issue 17, 2015

Upconversion luminescence mechanisms of Er3+ ions under excitation of an 800 nm laser

Abstract

The fundamental processes of upconversion (UC) emissions from trivalent lanthanide ions are essential for designing and improving the performance of UC materials. However, UC mechanisms involve multiple processes in one system because of the abundant energy states, which make it a challenge to exclusively verify and quantitatively evaluate the dominant process. In this paper, the mechanisms of green and red emissions in Er3+ doped NaYF4-glass ceramics under 800 nm continuous wave laser excitation are studied via excitation power-dependence, polarization-dependence, and the transient evolution. These UC emission properties are compared with those under single-/two-wavelength excitation in a pump–probe system of 800 nm and 1500 nm femtosecond lasers. These results indicate that the excited state absorption pathway of 4I15/24I9/24I13/22H11/2/4S3/2 plays the dominant role in the emission of the green band, and the cross relaxation pathway of 4I11/2 + 4I13/24F9/2 + 4I15/2 plays the main role in the emission of the red band.

Graphical abstract: Upconversion luminescence mechanisms of Er3+ ions under excitation of an 800 nm laser

Article information

Article type
Paper
Submitted
06 Jan 2015
Accepted
30 Mar 2015
First published
31 Mar 2015

Phys. Chem. Chem. Phys., 2015,17, 11481-11489

Upconversion luminescence mechanisms of Er3+ ions under excitation of an 800 nm laser

X. Shang, P. Chen, T. Jia, D. Feng, S. Zhang, Z. Sun and J. Qiu, Phys. Chem. Chem. Phys., 2015, 17, 11481 DOI: 10.1039/C5CP00057B

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