首页> 外文期刊>Journal of Electronic Materials >Crystal Growth, Optical, Thermal, Mechanical and Laser Damage Threshold Properties of Nonlinear Optical l-Methionine Inserted Potassium Pentaborate (LMKB5) Single Crystal for Optoelectronic Applications
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Crystal Growth, Optical, Thermal, Mechanical and Laser Damage Threshold Properties of Nonlinear Optical l-Methionine Inserted Potassium Pentaborate (LMKB5) Single Crystal for Optoelectronic Applications

机译:非线性光学L-蛋氨酸的晶体生长,光学,热,机械和激光损伤阈值插入钾五硼酸钾(LMKB5)单晶的光电应用

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摘要

l-methionine, boric acid and potassium carbonate were used to prepare l-methionine inserted potassium pentaborate (LMKB5) solution using deionized water as a solvent. A semi-organic crystal was grown by solvent vaporization at lab temperature. Structural analysis was performed on the LMKB5 crystal to affirm cell dimensions. Morphology of the grown crystal was confirmed by scanning electron microscopy (SEM). Energy dispersive x-ray (EDAX) study was used to obtain the elemental composition. The vibrational analysis was performed on the as-grown crystal, which confirms the presence of LMKB5. The optical analysis was performed using a UV-VIS-NIR spectrophotometer to calculate the energy gap of the title material. Thermogravimetry (TG) and differential scanning calorimetry (DSC) analysis are performed on a grown crystal to evaluate the thermal stability of LMKB5 crystal. Differential thermal analysis (DTA) curve affirms that the title material has crystalline nature due to a sharp endothermic peak at 193.49 degrees C. Mechanical strength of the material was estimated using Vicker's microhardness. Laser damage threshold (LDT) studies were carried out to analyze surface damage tolerance stability in crystal. Grown material is essential for a second harmonic generation (SHG).
机译:以去离子水为溶剂,用l-甲硫氨酸、硼酸和碳酸钾制备了l-甲硫氨酸插入五硼酸钾(LMKB5)溶液。在实验室温度下,通过溶剂蒸发法生长了一种半有机晶体。对LMKB5晶体进行了结构分析,以确定晶胞尺寸。通过扫描电子显微镜(SEM)证实了生长晶体的形态。能量色散x射线(EDAX)研究用于获得元素组成。对生长的晶体进行了振动分析,证实了LMKB5的存在。使用UV-VIS-NIR分光光度计进行光学分析,以计算标题材料的能隙。对生长的晶体进行热重分析(TG)和差示扫描量热分析(DSC),以评估LMKB5晶体的热稳定性。差热分析(DTA)曲线证实,由于在193.49摄氏度时有一个尖锐的吸热峰,因此标题材料具有结晶性质。使用维氏显微硬度估计材料的机械强度。激光损伤阈值(LDT)研究是为了分析晶体的表面损伤容限稳定性。生长材料对二次谐波产生(SHG)至关重要。

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