首页> 外文期刊>Crystal growth & design >A comparative study on solution-and bridgman-grown single crystals of benzimidazole by high-resolution X-ray diffractometry, Fourier transform infrared, microhardness, laser damage threshold, and second-harmonic generation measurements
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A comparative study on solution-and bridgman-grown single crystals of benzimidazole by high-resolution X-ray diffractometry, Fourier transform infrared, microhardness, laser damage threshold, and second-harmonic generation measurements

机译:高分辨率X射线衍射仪,傅里叶变换红外光谱,显微硬度,激光损伤阈值和二次谐波测量法对苯并咪唑溶液和布里奇曼生长的单晶的比较研究

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摘要

Nowadays more attention has been paid to the growth of organic nonlinear optical single crystals due to their high nonlinear optical efficiency and fairly good optical damage threshold comparable to that of inorganic counterparts. The organic nonlinear optical single crystals of benzimidazole (BMZ) grown by the slow evaporation solution growth technique (SEST) and the vertical Bridgman technique (VBT) were characterized, and their results have been compared. Characterization has been made by high-resolution X-ray diffractometry (HRXRD), Fourier transform infrared ( FTIR), laser damage threshold, microhardness, and second-harmonic generation (SHG) measurement studies. The high-resolution X-ray diffraction curves (DCs) recorded by an inhouse developed multicrystal X-ray diffractometer (MCD) revealed that the crystals grown by both methods contain internal structural grain boundaries. However, VBT crystals normally contain multiple low angle ( tilt angle alpha >= 1 arc min) boundaries due to thermal stress caused during the cooling cycle by the difference in the lattice expansion coefficients of the glass tube and the crystal, whereas SEST crystals were found to contain only one very low angle (alpha < 1 arc min) boundary probably due to entrapment of solvent in the crystal during growth. From FTIR studies, it was found that the packing of molecules is more dense in the case of VBT-grown crystals than the case of SEST-grown crystals. From the Vicker's microhardness measurements made along the [ 100] direction, superior mechanical behavior is observed in VBT crystals than in SEST crystals. The mechanical behavior is correlated with their laser damage threshold values.
机译:如今,由于有机非线性光学单晶的高非线性光学效率和与无机晶体相对应的相当好的光学损伤阈值,已引起人们更多的关注。通过慢蒸发溶液生长技术(SEST)和垂直布里奇曼技术(VBT)生长了苯并咪唑(BMZ)的有机非线性光学单晶,并对其结果进行了比较。通过高分辨率X射线衍射(HRXRD),傅立叶变换红外(FTIR),激光损伤阈值,显微硬度和二次谐波产生(SHG)测量研究进行了表征。内部开发的多晶X射线衍射仪(MCD)记录的高分辨率X射线衍射曲线(DC)显示,通过两种方法生长的晶体均包含内部结构晶界。但是,由于玻璃管和晶体的晶格膨胀系数不同,在冷却循环过程中产生的热应力,VBT晶体通常包含多个低角度(倾斜角α> = 1 arc min)边界,而发现SEST晶体由于在生长过程中溶剂截留在晶体中,因此仅包含一个非常小的角度边界(α<1 arc min)。从FTIR研究中发现,在VBT生长的晶体中,分子的堆积比在SEST生长的晶体中更紧密。根据沿[100]方向进行的维氏显微硬度测量,在VBT晶体中观察到的机械性能优于SEST晶体。机械行为与其激光损伤阈值相关。

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