Fig. 5: Experimental characterization and prediction of optical static refractive index for Gd1.894Zr1.894O6.629 with various La-substitution. | npj Computational Materials

Fig. 5: Experimental characterization and prediction of optical static refractive index for Gd1.894Zr1.894O6.629 with various La-substitution.

From: Quantitative prediction of optical static refractive index in complex oxides

Fig. 5

a EDS spectrum of Gd1.834La0.06Zr1.894O6.629 material. b The X-ray diffraction pattern of Gd1.834La0.06Zr1.894O6.629 after refinement by Rietveld method. c The schematic illustration of Gd1.834La0.06Zr1.894O6.629 crystal structure with multiple elements shown on the structural units. d The high-resolution TEM image of Gd1.834La0.06Zr1.894O6.629. e The crystal volume and bond length of Gd1.834−xLaxZr1.894O6.629 (x = 0, 0.02, 0.06, 0.1). f The refractive index of Gd1.834−xLaxZr1.894O6.629 (x = 0, 0.02, 0.06, 0.1). The error bars reflect the data obtained from multiple high-precision XRD refinements.

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