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Enhancing the SHG effect of zinc chloride-doped DAST single crystals: new potential materials for nonlinear optical device applications

机译:增强氯化锌掺杂龙液体晶体的SHG效应:非线性光学器件应用的新潜在材料

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摘要

The ionic organic salts of 4-dimethylamino-N-methyl-4-stilbazolium tosylate (DAST) single crystal hold the predominant place on potential organic nonlinear crystalline materials and electro-optic applications. In this present work, we have reported the synthesis and growth of ZnCl_2-doped DAST single crystals with different concentrations. The crystal was grown by the slow evaporation technique at room temperature. Structural and lattice constants of the grown crystals were determined by the powder X-ray diffraction (PXRD), and furthermore, confirm along with single-crystal X-ray diffraction (SXRD). FTIR studies affirm the presence of different vibrational modes of assignments and the presence of elements in the grown crystals was identified by EDAX study. The linear optical properties confirmed by UV-Vis absorption studies, and the calculated bandgap energies for pure 2.19 eV and dopants have 3.46, 3.41 and 3.36 eV for suitable materials for insulating and semiconductor behaviors. The second harmonic generation (SHG) output received from the pure and doped DAST crystal with applied input laser energy is 1.1 mJ/pulse using Kurtz-Perry powder technique. The obtained SHG efficiency for 0.01 mol ratio dopants have slightly less than the pure is 0.96, and 0.03, 0.05 mol, has 1.20 and 1.80 times greater than that of DAST. Hence, the results reveal that the doped crystal is very useful for optoelectronic and terahertz applications.
机译:4-二甲基氨基-N-甲基-4-硫唑鎓甲苯乙烯酯(DAST)单晶的离子有机盐在潜在的有机非线性晶体材料和电光应用上保持主要位置。在本工作中,我们已经报道了具有不同浓度的ZnCl_2掺杂的荷兰单晶的合成和生长。在室温下通过缓慢蒸发技术生长晶体。通过粉末X射线衍射(PXRD)测定生长晶体的结构和晶格常数,然后与单晶X射线衍射(SXRD)一起确定。 FTIR研究肯定了不同振动模式的存在,并通过EDAX研究鉴定了生长晶体中的元素的存在。通过UV-Vis吸收研究证实的线性光学性能,以及用于纯2.19eV和掺杂剂的计算的带隙能量为3.46,3.41和3.36eV​​,用于绝缘和半导体行为的合适材料。使用Kurtz-Perry粉末技术从纯和掺杂的洼地接收的第二谐波产生(SHG)输出与施加的输入激光能量为1.1MJ /脉冲。所获得的0.01摩尔比掺杂剂的SHG效率略小于纯度为0.96,0.03,0.05mol,比达斯特大的1.20%和1.80倍。因此,结果表明,掺杂晶体对于光电和太赫兹应用非常有用。

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  • 来源
    《Journal of materials science》 |2020年第15期|12943-12954|共12页
  • 作者单位

    Materials Science Research Laboratory Department of Physics Periyar University Salem Tamil Nadu 636 011 India;

    Materials Science Research Laboratory Department of Physics Periyar University Salem Tamil Nadu 636 011 India;

    Materials Science Research Laboratory Department of Physics Periyar University Salem Tamil Nadu 636 011 India;

    Department of Physics ERK College of Arts and Science Dharmapuri Tamil Nadu 636 905 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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