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LiMg(IO3)3: an excellent SHG material designed by single-site aliovalent substitution.


ABSTRACT: An excellent second harmonic generation (SHG) material, LiMg(IO3)3 (LMIO), has been elaborately designed from Li2MIV(IO3)6 (MIV = Ti, Sn, and Ge) by aliovalent substitution of the central MIV cation followed by Wyckoff position exchange. The new structure sustains the ideal-alignment of (IO3)- groups. Importantly, LMIO exhibits an extremely strong SHG effect of roughly 24 × KH2PO4 (KDP) under 1064 nm laser radiation or 1.5 × AgGaS2 (AGS) under 2.05 ?m laser radiation, which is larger than that of ?-LiIO3 (18 × KDP). The replacement of MIV with Mg2+ without d-d electronic transitions induces an obviously larger band gap (4.34 eV) with a short absorption edge (285 nm). This study shows that single-site aliovalent substitution provides a new synthetic route for designing SHG materials.

SUBMITTER: Chen J 

PROVIDER: S-EPMC7066663 | biostudies-literature | 2019 Dec

REPOSITORIES: biostudies-literature

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LiMg(IO<sub>3</sub>)<sub>3</sub>: an excellent SHG material designed by single-site aliovalent substitution.

Chen Jin J   Hu Chun-Li CL   Mao Fei-Fei FF   Zhang Xiao-Han XH   Yang Bing-Ping BP   Mao Jiang-Gao JG  

Chemical science 20191015 47


An excellent second harmonic generation (SHG) material, LiMg(IO<sub>3</sub>)<sub>3</sub> (LMIO), has been elaborately designed from Li<sub>2</sub>M<sup>IV</sup>(IO<sub>3</sub>)<sub>6</sub> (M<sup>IV</sup> = Ti, Sn, and Ge) by aliovalent substitution of the central M<sup>IV</sup> cation followed by Wyckoff position exchange. The new structure sustains the ideal-alignment of (IO<sub>3</sub>)<sup>-</sup> groups. Importantly, LMIO exhibits an extremely strong SHG effect of roughly 24 × KH<sub>2</sub  ...[more]

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