Tailoring ordered structures with distorted [TeO3] and aligned [ScO6] motifs for balanced nonlinear optical properties in rare-earth tellurate crystal

Abstract

Tailoring nonlinear optical (NLO) crystal with a large bandgap and wide transparency extending from ultraviolet (UV) to mid-infrared (IR) wavelengths remains a challenge due to the inherent trade-offs in these properties. Here, we report two novel scandium tellurite NLO crystals, AScTe2O6 (A=K, Rb), engineered through a synergistic strategy that optimizes both electron distribution and lattice vibrations. These isostructural crystals feature a unique 2D topological framework analogous to KBBF, built from distorted [TeO3] pyramids and [ScO6] octahedra. Notably, RbScTe2O6 achieves an ultrawide bandgap of 4.43 eV with a UV cutoff at 236 nm, the shortest reported among known NLO tellurates, coupled with an extended IR transparency beyond 7.0 µm. Moreover, it affords a compelling combination of a high laser-induced damage threshold of 27.8×AgGaS2, a strong phase-matchable strong harmonic generation response of 2.3×KDP, and a large birefringence of 0.19 at 1064 nm. The highly polarizable [TeO3] pyramids and well-aligned [ScO6] octahedra collectively dominate the optical anisotropy and NLO activity, as evidenced by first-principles calculations and dipole moment analyses. These outstanding attributes establish RbScTe2O6 as a highly promising candidate for NLO applications in wide wavelength ranges.

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Article information

Article type
Edge Article
Submitted
26 Sep 2025
Accepted
13 Nov 2025
First published
18 Nov 2025
This article is Open Access

All publication charges for this article have been paid for by the Royal Society of Chemistry
Creative Commons BY license

Chem. Sci., 2025, Accepted Manuscript

Tailoring ordered structures with distorted [TeO3] and aligned [ScO6] motifs for balanced nonlinear optical properties in rare-earth tellurate crystal

X. Wang, T. Zhang, H. Zhao, N. Jia, H. Liu, N. Ye, Z. Hu and C. Li, Chem. Sci., 2025, Accepted Manuscript , DOI: 10.1039/D5SC07486J

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