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LiMg(IO

Authors :
Jin, Chen
Chun-Li, Hu
Fei-Fei, Mao
Xiao-Han, Zhang
Bing-Ping, Yang
Jiang-Gao, Mao
Source :
Chemical Science
Publication Year :
2019

Abstract

An excellent SHG iodate, LiMg(IO3)3, has been obtained via the aliovalent substitution of defect-containing MIV sites with ordered Mg2+.<br />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 μm laser radiation, which is larger than that of α-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.

Subjects

Subjects :
Chemistry

Details

ISSN :
20416520
Volume :
10
Issue :
47
Database :
OpenAIRE
Journal :
Chemical science
Accession number :
edsair.pmid..........7b963a0c8e1ed254a25d6a8da711c1fd