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首页> 外文期刊>Optical Materials >A methodical approach to physico-chemical analysis of bis (potassium hydrogen l-malate).malic acid - A semi-organic single crystal for nonlinear optical applications
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A methodical approach to physico-chemical analysis of bis (potassium hydrogen l-malate).malic acid - A semi-organic single crystal for nonlinear optical applications

机译:双(l-苹果酸氢钾)。苹果酸的理化分析的方法学方法-一种用于非线性光学应用的半有机单晶

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摘要

Bis (potassium hydrogen l-malate).malic acid (PMM), a semi-organic nonlinear optical material was synthesized and crystals were grown from aqueous solution by slow evaporation solution growth technique (SEST). The lattice parameters and space group were confirmed by single crystal X-ray diffraction study. Powder X-ray diffraction study reveals the crystalline nature of the title material. Crystalline perfection of grown crystal was analyzed using high resolution X-ray diffraction rocking curve technique. Fourier transform infrared spectral analysis revealed the vibrational behaviour of chemical bonds of various functional groups. Surface feature of the grown crystal was analyzed through atomic force microscopy. Optical transmittance study shows that the grown crystal has good transparency in the entire visible region. The luminescent property of the title crystal was investigated through photoluminescence spectroscopy. Second harmonic generation efficiency was found using Kurtz-Perry powder technique. The laser-induced surface damage threshold value for the grown crystal as measured using a Nd:YAG laser. Thermal analyses reveal that the crystal is stable up to 230 degrees C. The mechanical strength of the crystal was assessed by Vickers microhardness tester. The dielectric behaviour and its parameters were established through dielectric study. Piezoelectric charge coefficient (d(33)) of the grown crystal was determined using piezoelectric analysis.
机译:合成了半有机非线性光学材料Bis(苹果酸氢钾)。苹果酸(PMM),并通过缓慢蒸发溶液生长技术(SEST)从水溶液中生长出晶体。通过单晶X射线衍射研究证实了晶格参数和空间群。粉末X射线衍射研究揭示了标题物质的晶体性质。使用高分辨率X射线衍射摇摆曲线技术分析了生长晶体的晶体完善度。傅立叶变换红外光谱分析揭示了各种官能团化学键的振动行为。通过原子力显微镜分析生长的晶体的表面特征。透光率研究表明,生长的晶体在整个可见光区域具有良好的透明度。通过光致发光光谱法研究了标题晶体的发光性质。使用Kurtz-Perry粉末技术发现了二次谐波的产生效率。使用Nd:YAG激光测量的生长晶体的激光诱导表面损伤阈值。热分析表明该晶体在高达230摄氏度的温度下是稳定的。该晶体的机械强度通过维氏显微硬度计进行评估。通过介电研究建立了介电性能及其参数。使用压电分析确定生长的晶体的压电电荷系数(d(33))。

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