Surendra B. Anantharaman, Joachim Kohlbrecher, et al.
MRS Fall Meeting 2020
Luminescence from [(NH4(18-Crown-6))4MnBr4][TlBr4]2 (1), [(NH4(18-Crown-6))4MnCl4][TlCl4]2 (2), [(NH4(18-Crown-6))2MnBr4] (3), and [(NH4(18-Crown-6))2MnCl4] (4) was studied in search of new insights regarding crystal defects in 2. Emission from 3 and 4 is normal Mn2+(4T1(4G) →6A1); that of 2 (λmax ≈ 520 nm at ca. 300 K and 560 nm at 77 K) is unusual and temperature dependent. Thermal barriers (kJ/mol, assignment): green emission of 1 and 2, T<150 K (1-2, NH4+ rotations), 150<T<250 K (7-14, energy migration among [MnX4]2−), 250<T<300 K (26-35, rotations of 18-Crown-6)); yellow emission of 2: T<250 K (7-8, energy migration among [MnX4]2−), T>250 K (29 kJ/mol, defect-to-Mn2+(4T1(4G)) back energy transfer). Crystal data for 4: Space group P21/c; Z = 4; a = 20.173(1) Å; b = 9.0144(8) Å; c = 20.821(1) Å; β = 98.782(5)°; V = 3741.9(8) Å3; Rw = 0.059; R = 0.054. © 2002 Elsevier Science.
Surendra B. Anantharaman, Joachim Kohlbrecher, et al.
MRS Fall Meeting 2020
R.D. Murphy, R.O. Watts
Journal of Low Temperature Physics
O.F. Schirmer, K.W. Blazey, et al.
Physical Review B
William Hinsberg, Joy Cheng, et al.
SPIE Advanced Lithography 2010