Building-block approach to the discovery of Na8Mn2(Ge2Se6)2 : A polar chalcogenide exhibiting promising harmonic generation signals with a high laser-induced damage threshold

  • Balijapelly, Srikanth
  • Craig, Andrew J.
  • Cho, Jeong Bin
  • Jang, Joon, I
  • Ghosh, Kartik
  • 외 3명
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초록

A new polar quaternary chalcogenide, Na8Mn2(Ge2Se6)(2), has been synthesized using the building-block approach by reacting preformed Na6Ge2Se6 and MnCl2 at 750 degrees C. The structure consists of layers of [Na(1) Mn(Ge2Se6)](3) stacked perpendicular to the c-axis and sodium ions occupying the interlayer space. An indirect bandgap of 1.52 eV has been calculated using density functional theory, which is expectedly underestimated compared to the observed optical bandgap of 1.95 eV derived from diffuse reflectance spectroscopic measurements in the UV/Vis/NIR region. Magnetic measurements confirm the paramagnetic nature of Na8Mn2(Ge2Se6)(2) with an experimental magnetic moment of 5.8 mu(B) in good agreement with the theoretical spin only moment of 5.92 mu(B) for high spin Mn2+. Na8Mn2(Ge2Se6)(2) exhibits a potentially wide region of transparency in the measured range of 2.5-25 mu m. Na8Mn2(Ge2Se6)(2) shows a modest second-harmonic generation (SHG) response but with a high laser-induced damage threshold (LIDT) of similar to 9x AgGaSe2. Third harmonic generation (THG) measurements indicate that Na8Mn2(Ge2Se6)(2) displays a high THG coefficient (1.9x AgGaSe2) at lambda =1800 nm. (C) 2021 Elsevier B.V. All rights reserved.

키워드

NLOSHGTHGPolar crystalHigh LIDTChalcogenidesNONLINEAR-OPTICAL MATERIALSTOTAL-ENERGY CALCULATIONSCRYSTAL-STRUCTUREETHANE-LIKEQUATERNARY CHALCOGENIDESGESESIFAMILYRB
제목
Building-block approach to the discovery of Na8Mn2(Ge2Se6)2 : A polar chalcogenide exhibiting promising harmonic generation signals with a high laser-induced damage threshold
저자
Balijapelly, SrikanthCraig, Andrew J.Cho, Jeong BinJang, Joon, IGhosh, KartikAitken, Jennifer A.Chernatynskiy, Aleksandr, VChoudhury, Amitava
DOI
10.1016/j.jallcom.2021.163392
발행일
2022-04-15
유형
Article
저널명
Journal of Alloys and Compounds
900