Abstract
The second harmonic generation (SHG) response, birefringence, and ultraviolet (UV) absorption edge are three crucial parameters of UV nonlinear optical (NLO) crystals. However, striking a balance among these parameters has been a challenging endeavor. The synergistic combination of mixed chromophores is regarded as an effective strategy to achieve this task, leveraging the benefits of both functional motifs. Herein, a novel UV NLO crystal, Rb(NO3)(SO3NH3), was successfully designed by integrating the π-conjugated [NO3] unit with the non-π-conjugated [SO3NH3] unit. As anticipated, the π-conjugated [NO3] units contribute to a robust SHG effect and birefringence, while the non-π-conjugated [SO3NH3] units help in widening the band gap and controlling the birefringence within an optimal range by decoupling the π-conjugated interactions and reducing the system's anisotropy. Consequently, it exhibits a strong SHG response (7 × KDP), moderate birefringence (0.07@546 nm), and a short UV absorption edge (208 nm), marking it as a promising UV NLO crystal.
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CITATION STYLE
Song, Y., Lin, C., Zhao, X., Yan, T., Ye, N., Tian, H., & Luo, M. (2024). Synergistic combination of different types of functional motif in Rb(NO3)(SO3NH3) for realizing excellent ultraviolet optical nonlinearity. Inorganic Chemistry Frontiers, 11(14), 4329–4335. https://doi.org/10.1039/d4qi01044b
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