Joos Jonas J, Korthout Katleen, Amidani Lucia, Glatzel Pieter, Poelman Dirk, Smet Philippe F
LumiLab, Department of Solid State Sciences, Ghent University, 9000 Gent, Belgium.
Center for Nano- and Biophotonics (NB Photonics), Ghent University, 9000 Gent, Belgium.
Phys Rev Lett. 2020 Jul 17;125(3):033001. doi: 10.1103/PhysRevLett.125.033001.
Laser excitation and x-ray spectroscopy are combined to settle a long-standing question in persistent luminescence. A reversible electron transfer is demonstrated, controlled by light and showing the same kinetics as the persistent luminescence. Exposure to violet light induces charging by oxidation of the excited Eu^{2+} while Dy^{3+} is simultaneously reduced. Oppositely, detrapping of Dy^{2+} occurs at ambient temperature or by infrared illumination, yielding afterglow or optically stimulated luminescence, respectively.
激光激发与X射线光谱相结合,解决了持续发光领域一个长期存在的问题。证明了一种可逆电子转移,其受光控制,且显示出与持续发光相同的动力学。暴露于紫光下会通过激发态Eu²⁺的氧化而导致充电,同时Dy³⁺被还原。相反,Dy²⁺在环境温度下或通过红外照明发生去俘获,分别产生余辉或光激发发光。