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Gd(NO3)(Se2O5)·3H2O: a nitrate–selenite nonlinear optical material with a short ultraviolet cutoff edge
Author(s) -
Chao Wu,
Longhua Li,
Lin Lin,
Zhipeng Huang,
Mark G. Humphrey,
Chi Zhang
Publication year - 2020
Publication title -
dalton transactions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.98
H-Index - 184
eISSN - 1477-9234
pISSN - 1477-9226
DOI - 10.1039/d0dt00116c
Subject(s) - birefringence , selenium , cutoff , density functional theory , materials science , nonlinear optical , ultraviolet , spectroscopy , hydrogen bond , refractive index , analytical chemistry (journal) , optoelectronics , chemistry , optics , molecule , computational chemistry , nonlinear system , physics , organic chemistry , quantum mechanics , metallurgy , chromatography
The first example of a rare-earth metal nitrate-selenite nonlinear optical (NLO) crystal, Gd(NO 3 )(Se 2 O 5 )·3H 2 O (1), was synthesized by hydrothermal reaction. This compound crystallizes in the noncentrosymmetric space group P2 1 2 1 2 1 , and its structure features two-dimensional (2D) [Gd(NO 3 )(Se 2 O 5 )] ∞ layers, extending to a pseudo-3D framework linked by hydrogen bonds. 1 exhibits a phase-matchable SHG efficiency about 0.2 times that of KH 2 PO 4 (KDP) and a large laser damage threshold of 236.26 MW cm -2 . The UV-Vis-NIR diffuse reflectance spectroscopy study shows that the UV cutoff edge of 1 is 224 nm, which is the shortest value observed among selenite-based NLO materials. The birefringence of 1 is 0.109@1064 nm based on density functional theory calculations. These optical properties make 1 a potential UV NLO material. Theoretical studies using density functional theory have been implemented to further understand the relationship between its optical properties and band structures.

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