Structural Insights of Li+ Doped P Crystals of Upconverting NaYF4:Yb3+/M3+ (M3+=Er3+ or Tm3+) through Extensive Synchrotron Radiation-based X-Ray Probing.

2021 
Explaining the intensification of upconversion luminescence (UCL) from single phase NIR-upconverting (UC) crystal due to non-lanthanide dopant insertion appears challenging in absence of proper mechanistic investigation. In this paper through extensive synchrotron based x-ray probing, we made an attempt to understand the variations in the structural attributes of UC crystals generated through non-lanthanide ion doping. The structure of the NaYF4/Yb3+/M3+ (M3+=Er3+/Tm3+) UC crystals doped with different Li+ concentrations were primarily investigated using Rietveld refinement analysis obtained from synchrotron x-ray diffraction (SXRD) and supported with absorption data (XAFS), where necessary. The structural investigation was also supported by TEM, HRTEM, XANES, FT-IR and Raman spectroscopy. Rietveld analysis revealed that all the generated Li+ doped NaYF4 crystals belong to the P space group. Most of the Li+ ions were found to be localized in the octahedral voids and lattice positions, simultaneously in P crystal structures. The overall study showed that the change in the UCL intensity behavior with Li+ incorporation could not be predicted from the lattice parameter, morphology or the particle size variation. Detailed XAFS study rather suggested a possible existence of local lattice disorder, which was found to be reflected in terms of lattice strain obtained from Williamson-Hall analysis, irrespective of the activator ions. The remarkable coherence between the variation trends of UCL intensity and lattice strain indicated that the perturbation of local symmetry field is some way connected with the local disorder that may not always manifest through average structural attributes like lattice parameters.
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