PbCdF(SeO3)(NO3): A Nonlinear Optical Material Produced by Synergistic Effect of Four Functional Units

Ma, YX; Hu, CL; Li, BX; Kong, F; Mao, JG

HERO ID

5115455

Reference Type

Journal Article

Year

2018

Language

English

PMID

30160946

HERO ID 5115455
In Press No
Year 2018
Title PbCdF(SeO3)(NO3): A Nonlinear Optical Material Produced by Synergistic Effect of Four Functional Units
Authors Ma, YX; Hu, CL; Li, BX; Kong, F; Mao, JG
Journal Inorganic Chemistry
Volume 57
Issue 18
Page Numbers 11839-11846
Abstract A new nonlinear optical material, the first fluoride selenite nitrate PbCdF(SeO3)(NO3), was successfully synthesized by traditional solid state reactions. This compound crystallizes in the polar space group of Pca21, and its structure features a novel 2D layered structure consisting of 1D lead nitrate chains and 2D cadmium selenite layers. PbCdF(SeO3)(NO3) exhibits a phase-matchable SHG efficiency of about 2.6 times that of KDP and a wide band gap of 4.42 eV. Its laser damage threshold was measured to be 135.6 MW/cm2, which is comparative to that of the reported Li7(TeO3)3F with a short ultraviolet cutoff edge. Theoretical calculation confirmed that the synergistic effects of all the four functional units make PbCdF(SeO3)(NO3) a remarkable SHG material.
Doi 10.1021/acs.inorgchem.8b02044
Pmid 30160946
Wosid WOS:000445165400061
Is Certified Translation No
Dupe Override No
Is Public Yes
Language Text English