Effect of magnesium chloride on growth, crystalline perfection, structural, optical, thermal and NLO behavior of γ-glycine crystals

被引:47
作者
Dillip, G. R. [2 ]
Bhagavannarayana, G. [3 ]
Raghavaiah, P. [4 ]
Raju, B. Deva Prasad [1 ]
机构
[1] Sri Venkateswara Univ, Dept Future Studies, Tirupati 517502, Andhra Pradesh, India
[2] Sri Venkateswara Univ, Dept Phys, Tirupati 517502, Andhra Pradesh, India
[3] CSIR, Natl Phys Lab, Mat Characterizat Div, New Delhi 110012, India
[4] Univ Hyderabad, Sch Chem, Hyderabad 500046, Andhra Pradesh, India
关键词
Crystal growth; FTIR; Optical properties; Thermal properties; SINGLE-CRYSTALS; DEFECTS; POWDER; ALPHA; FILMS; ACID;
D O I
10.1016/j.matchemphys.2012.03.004
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In the present study, single crystals of gamma-glycine possessing excellent non-linear optical properties were successfully grown at room temperature in the presence of magnesium chloride (MgCl2) for the first time by using the slow solvent evaporation method. The second harmonic conversion efficiency of gamma-glycine crystal was determined using Kurtz powder technique with Nd:YAG laser and was found to be 6 times greater than that of the standard inorganic sample potassium dihydrogen phosphate (KDP). The crystalline perfection of the grown crystal was analyzed using high-resolution X-ray diffraction (HRXRD) rocking curve measurements. The grown crystal was subjected to single crystal XRD and powder XRD, which confirmed that the crystal has hexagonal structure and belongs to space group P3(1). Inductively coupled plasma optical emission spectrometry (ICP-OES) was carried out to quantify the concentration of Mg element in the grown gamma-glycine single crystal. Fourier transform infrared (FUR) spectral studies were made to identify the functional groups. The optical band gap was likewise estimated for gamma-glycine crystal using UV-vis-NIR study. The optical measurements of gamma-glycine crystal helped to calculate the optical constants such as refractive index (n), the extinction coefficient (K), electric susceptibility (chi(c)) and both the real (epsilon(r)) and imaginary (epsilon(i)) components of the dielectric permittivity functions of photon energy, which is essentially required to develop optoelectronic devices. Thermogravimetric analysis (TGA) and differential thermal analysis (DTA) were used to study thermal stability and decomposition point of the grown crystal. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:371 / 376
页数:6
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