Abstract

This paper presents a comparative study of the optical properties of Mn4+ ion in three double perovskite compounds with the formula Ba2LnNbO6, where Ln = La, Gd, Y. The energy levels of the Mn4+ ion are calculated by the exchange charge model (ECM) of crystal field theory and compared with the experimental data that has been presented in the literature. The calculated Mn4+ energy levels are in good agreement with the experimental spectra. We also show that the energy of the 2E→A2 emission transition (zero-phonon R-line) is dependent on the degree to which the O–M–O bond angle is reduced from the ideal 90° of the MnO6 octahedron. Comments are made on the intensity of the R-line in the three double perovskites.

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