On the crystalline environment of luminescent Tb ions embedded in indium tin oxide thin films: a DFT and Crystal field analysis assessment
arXiv:2502.08517
Abstract
We assess the local symmetry and crystal environment of trivalent terbium ions embedded in an indium tin oxide (ITO) matrix with bixbyite structure. The \mbox{Tb} ions tend to substitute \mbox{In} ions in two different cationic sites ( and ). Density Functional Theory (DFT) calculations suggest that the \mbox{Tb} ions are mainly located at symmetry sites relaxing selection rules and enabling electric dipole transitions, with the $^5\text{D}_4\rightarrow\leftindex^7{\text{F}}_2$ transition being the most intense, providing a red color to the light emission. Photoluminescence emission spectra under UV excitation at \qty{83}{\kelvin} revealed 30 intra-4 transitions, which were assigned to the $\leftindex^7{\text{F}}_J$ ground multiplet of the \mbox{Tb} ion. Crystal-field analysis shows a strong alignment between calculated and observed energy levels, yielding a standard deviation of $Ï=\qty{15.1}{\centi\per\metre}$. We believe these results can help to understand the activation mechanisms of \mbox{Tb} luminescent centers in transparent conductive oxides, as well as the potential to modulate \mbox{Tb} emission color through its crystalline environment.
8 pages, 4figures