首页> 外文期刊>Journal of Crystal Growth >Preparation, characterization and non-linear optical properties of pristine m-nitroaniline (m-NA) and its recycled polystyrene (Re-PS) coated single crystals
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Preparation, characterization and non-linear optical properties of pristine m-nitroaniline (m-NA) and its recycled polystyrene (Re-PS) coated single crystals

机译:原始间硝基苯胺(m-NA)及其回收的聚苯乙烯(Re-PS)涂层单晶的制备,表征和非线性光学性质

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摘要

Meta-nitroaniline (m-NA) is one of the organic single crystals extensively studied due to its high non-linear effect. m-NA is also known to exhibit comparable or even better non-linear optical (NLO) properties than known inorganic materials. In this paper, we report development of m-NA single crystals by solution growth technique using different solvent systems. The size of the single crystal varies depending on solvent. The highest average crystal size acquired was 10 mm × 5 mm × 5 mm using methyl ethyl ketone and acetone as solvent. These single crystals were characterized using various physico-chemical techniques such as XRD and scanning electron microscopy (SEM). The developed crystals were subsequently coated with recycled polystyrene (Re-PS) (1, 2, 5 and 10wt% concentrations) to study the effect of polymer coating on the second harmonic generation (SHG) properties of the single crystals. The purpose of polymer coating on m-NA single crystal is to improve surface morphology of crystal (i.e. it makes surface smooth) and to enhance power handling capacity for pulse laser of a crystal which, in turn, improves the SHG intensity. The optimum percentage of coating was determined for the m-NA single crystals obtained from different solvent systems. Furthermore, the polymer coating also plays key role in preventing the degradation of the m-NA crystal (well-known as highly sublime material) and ultimately increasing the shelf life of the crystal for its device application.
机译:间硝基苯胺(m-NA)由于其高度的非线性效应而成为被广泛研究的有机单晶之一。与已知的无机材料相比,m-NA还表现出可比甚至更好的非线性光学(NLO)特性。在本文中,我们报告了通过使用不同溶剂体系的溶液生长技术开发的m-NA单晶。单晶的尺寸根据溶剂而变化。使用甲基乙基酮和丙酮作为溶剂,获得的最高平均晶体尺寸为10 mm×5 mm×5 mm。使用各种物理化学技术(例如XRD和扫描电子显微镜(SEM))对这些单晶进行了表征。随后用再生的聚苯乙烯(Re-PS)(1、2、5和10wt%的浓度)涂覆显影后的晶体,以研究聚合物涂覆对单晶二次谐波生成(SHG)性能的影响。聚合物涂覆在m-NA单晶上的目的是改善晶体的表面形态(即使表面光滑)并增强晶体的脉冲激光的功率处理能力,进而改善SHG强度。确定了从不同溶剂体系获得的m-NA单晶的最佳涂层百分比。此外,聚合物涂层在防止m-NA晶体(众所周知的高度升华材料)的降解以及最终增加晶体在其设备应用中的保存期限方面也起着关键作用。

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