TY - JOUR
T1 - Decay times of the spin-forbidden and spin-enabled transitions of Yb 2+ doped in CsCaX 3 and CsSrX 3 (X = Cl, Br, I)
AU - Suta, Markus
AU - Senden, Tim
AU - Olchowka, Jacob
AU - Adlung, Matthias
AU - Meijerink, A
AU - Wickleder, Claudia
PY - 2017
Y1 - 2017
N2 - © the Owner Societies 2017. In this paper, a systematic study of the decay times of the spin-enabled and spin-forbidden transitions of Yb 2+ doped into the halidoperovskites CsMX 3 (M = Ca, Sr; X = Cl, Br, I) is presented. The spin-forbidden transitions are characterized by ms decay times, which are typical for Yb 2+ . On the contrary, the spin-enabled transitions show much shorter decay times in the range of μs and have so far only been rarely observed. These results allow detailed conclusions about systematics of the decay times of Yb 2+ doped in similar compounds and their correlation to the local structure of the coordination sphere of Yb 2+ as well as the role of vibrational interaction between the excited high spin (HS) and low spin (LS) states. The halidoperovskites are ideally suited as host lattices in this context and may work as text book examples due to their comparable structures, which allows a detailed interpretation of the decay times in relation to the local structure. An understanding of the impact of the composition and structure of the host material on the decay times of Yb 2+ will be of relevance for future applications of this activator in scintillators or lighting materials.
AB - © the Owner Societies 2017. In this paper, a systematic study of the decay times of the spin-enabled and spin-forbidden transitions of Yb 2+ doped into the halidoperovskites CsMX 3 (M = Ca, Sr; X = Cl, Br, I) is presented. The spin-forbidden transitions are characterized by ms decay times, which are typical for Yb 2+ . On the contrary, the spin-enabled transitions show much shorter decay times in the range of μs and have so far only been rarely observed. These results allow detailed conclusions about systematics of the decay times of Yb 2+ doped in similar compounds and their correlation to the local structure of the coordination sphere of Yb 2+ as well as the role of vibrational interaction between the excited high spin (HS) and low spin (LS) states. The halidoperovskites are ideally suited as host lattices in this context and may work as text book examples due to their comparable structures, which allows a detailed interpretation of the decay times in relation to the local structure. An understanding of the impact of the composition and structure of the host material on the decay times of Yb 2+ will be of relevance for future applications of this activator in scintillators or lighting materials.
UR - http://www.mendeley.com/research/decay-times-spinforbidden-spinenabled-transitions-yb-2-doped-cscax-3-cssrx-3-x-cl-br-i
U2 - 10.1039/C7CP00581D
DO - 10.1039/C7CP00581D
M3 - Article
SN - 1463-9076
VL - 19
SP - 7188
EP - 7194
JO - Physical Chemistry Chemical Physics
JF - Physical Chemistry Chemical Physics
IS - 10
ER -