dl -蛋氨酸掺杂KDP晶体的生长与表征

D. J. Dave, K. Parikh, M. Joshi
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摘要

磷酸二氢钾(KDP)晶体是非线性光学(NLO)应用中最常用的晶体之一。大多数氨基酸也表现出NLO性质;因此,研究了在KDP晶体中掺杂一种氨基酸dl -蛋氨酸的影响。采用慢速溶剂蒸发溶液生长技术制备了纯的和dl -蛋氨酸掺杂的KDP晶体。为了生长掺杂晶体,在KDP水溶液中分别加入0.3和0.4重量%的dl -蛋氨酸。在8至10天内获得高质量的透明晶体。通过CHN分析和FT-IR光谱研究证实了生长晶体中氨基酸dl -蛋氨酸的掺杂。粉末XRD分析表明,掺杂对样品的单相性质和晶胞参数影响不大。随着DL-蛋氨酸掺杂量的增加,KDP晶体的二次谐波产生效率和光透射率增加。报道了在100hz ~ 100khz范围内,介质常数、介质损耗(tanδ)随外加频率的变化。介电常数和介电损耗随外加电场频率值的增大而减小。DL-蛋氨酸掺杂的KDP晶体的介电常数和介电损耗均低于纯KDP晶体。利用热重分析(TGA)研究了生长晶体的热稳定性。发现dl -蛋氨酸的掺杂略微降低了KDP的热稳定性,但增强了其光学性能。
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Growth and Characterization of DL-Methionine Doped KDP Crystals
Potassium Dihydrogen Phosphate (KDP) crystals are one of the most popular crystals used for Non-linear Optical (NLO) applications. Most of the amino acids also exhibit NLO properties; therefore, the effect of doping of one of the amino acids, DL-methionine, in KDP crystals has been investigated. Pure and DL-methionine doped KDP crystals were grown by slow solvent evaporation solution growth technique. For growing the doped crystal, 0.3 and 0.4 weight percent DL-methionine was added to aqueous solution of KDP. Good quality transparent crystals were obtained within 8 to 10 days. Doping of amino acid DL-methionine in grown crystals was confirmed by the CHN analysis and FT-IR spectroscopy studies. The powder XRD indicated the single phase nature of samples and the unit cell parameters were not altered much due to doping. The value of second harmonic generation (SHG) efficiency and optical transmission in UV-Vis spectra increased as the doping of DL- methionine increased in KDP crystals. The variation of dielectric constant, dielectric loss (tanδ), with frequency of applied field in the range from 100 Hz to 100 kHz is reported. The dielectric constant and dielectric loss decreased with increase the value of frequency of applied field. The dielectric constant and the dielectric loss of DL- methionine doped KDP crystals were lower than the pure KDP crystals. Thermal stability of the grown crystals was studied by employing thermo-gravimetry analysis (TGA). It was found that the doping of DL-methionine decreased thermal stability of KDP marginally, but enhanced optical properties.
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