| Literature DB >> 26183323 |
Hai-Feng Li1,2, Wen-Zhi Sun1,2, Yong-Lei Jia1,2, Teng-Fei Ma1, Ji-Peng Fu1,2, Da Li1, Su Zhang1, Li-Hong Jiang1, Ran Pang3, Cheng-Yu Li4.
Abstract
A series of new long afterglow phosphors Ca2 SnO4:xTm(3+) were synthesized by using traditional solid-state reactions. XRD measurements and Rietveld refinement revealed that the incorporation of the Tm(3+) dopants generated no second phase other than the original one of Ca2 SnO4, which indicated that the dopants completely merged into the host. The corresponding optical properties were further systematically studied by photoluminescence, phosphorescence, and thermoluminescence (TL) spectroscopy. The results show that the Tm(3+)-related defects account for the bright bluish green afterglow emission from the characteristic f-f transitions of Tm(3+) ions. The bluish green long-lasting phosphorescence could be observed for 5 h by the naked eye in a dark environment after the end of UV irradiation. Two TL peaks at 325 and 349 K from the TL curves were adopted to calculate the depth of the traps, which were 0.45 and 0.78 eV, respectively. The mechanism of the long afterglow emission was also explored.Entities:
Keywords: doping; lanthanides; luminescence; phosphors; photochemistry
Year: 2015 PMID: 26183323 DOI: 10.1002/asia.201500580
Source DB: PubMed Journal: Chem Asian J ISSN: 1861-471X