4.7 Article

Syntheses, characterization and calculations of LimAnM6O15 (A=Rb, Cs; M=Si, Ge; m+n=6)

期刊

SCIENCE CHINA-MATERIALS
卷 63, 期 9, 页码 1769-1778

出版社

SCIENCE PRESS
DOI: 10.1007/s40843-020-1310-1

关键词

NLO material; silicate; germanate; UV region; SHG effect; structure-property relationship

资金

  1. Natural Science Foundation of Tianjin [19JCZDJC38200]
  2. National Natural Science Foundation of China [51802217, 51972230, 61835014, 51890864, 51890865]
  3. National Key R&D Program of China [2016YFB0402103]

向作者/读者索取更多资源

Alike phosphates, silicates and germanates exclusively containing tetrahedral basic building units (BBUs) can also exhibit ultraviolet (UV) even deep-UV transitions. They are important for the design of new UV or deep-UV nonlinear optical (NLO) materials. In this paper, four new alkali metal silicates and germanates, Li2Rb4Si6O15, Li2Cs4Si6O15, Li3Rb3Ge6O15 and Li3Cs3Ge6O15 were successfully synthesized by a high temperature solid state reaction. They obey the general formula of Li(m)A(n)M(6)O(15) (A=Rb, Cs; M=Si, Ge; m+n=6) and all exhibit the Sr2Be2B2O7 (SBBO)-like structures. More importantly, Li3Rb3Ge6O15 and Li3Cs3Ge6O15 crystallize in the noncentrosymmetric (NCS) structures and exhibit remarkable phase-matched second harmonic generation (SHG) effect, 0.8xKH(2)PO(4) (KDP) and 1xKDP, respectively. These indicate that they are potential as UV or deep-UV NLO materials. Furthermore, their optical and NLO properties as well as thermal properties were measured. The structure-property relationships were studied by the dipole moment calculations and the first-principles calculations.

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