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Bulk crystal growth, optical, mechanical and ferroelectric properties of new semiorganic nonlinear optical and piezoelectric Lithium nitrate monohydrate oxalate single crystal

机译:新型半有机非​​线性光学和压电硝酸一水合草酸锂单晶的块状晶体生长,光学,机械和铁电性能

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New semiorganic nonlinear optical single crystals of Lithium nitrate oxalate monohydrate (LNO) were grown by slow evaporation solution technique. Single crystal X-ray diffraction study indicated that LNO crystal belongs to the triclinic system with space group P1. Various functional groups present in the material were identified by FTIR and Raman analysis. UV-vis study showed the high transparency of crystals with a wide band gap 5.01 eV. Various Optical constants i.e. Urbach energy (E-u), extinction coefficient (K), refractive index, optical conductivity, electric susceptibility with real and imaginary parts of dielectric constant were calculated using the transmittance data which have applications in optoelectronic devices. A sharp emission peak was found at 438 nm in photoluminescence measurement, which revealed suitability of crystal for fabricating violet lasers. In dielectric studies, a peak has been observed at 33 degrees C which is due to ferroelectric to paraelectric phase transition. Piezoelectric charge coefficients (d(33) = 9.2 pC/N and g(33)) have been calculated, which make it a suitable for piezoelectric devices applications. In ferroelectric studies, a saturated loop was found in which the values of coercive field and remnant polarization were found to be 2.18 kV/cm and 0.39 mu C/cm(2), respectively. Thermal behavior was studied by TGA and DSC studies. The relative SHG efficiency of LNO was found to be 1.2 times that of KDP crystal. In microhardness study, Meyer's index value was found to be 1.78 which revealed its soft nature. These optical, dielectric, piezoelectric, ferroelectric, mechanical and non-linear optical properties of grown crystal establish the usefulness of this material for optoelectronics, non-volatile memory and piezoelectric devices applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:采用缓慢蒸发溶液技术生长了草酸一水合硝酸锂的新型半有机非​​线性光学单晶。单晶X射线衍射研究表明,LNO晶体属于三斜晶系,空间群为P1。通过FTIR和拉曼分析鉴定了材料中存在的各种官能团。 UV-vis研究表明,带隙为5.01 eV的晶体具有很高的透明度。使用透射率数据计算出各种光学常数,即Urbach能量(E-u),消光系数(K),折射率,光导率,电导率以及介电常数的实部和虚部,这些光电常数已在光电器件中得到应用。在光致发光测量中在438 nm处发现一个尖锐的发射峰,这表明晶体适合于制造紫激光。在介电研究中,由于铁电到顺电相变,在33摄氏度处观察到一个峰值。已计算出压电电荷系数(d(33)= 9.2 pC / N和g(33)),这使其适合压电器件应用。在铁电研究中,发现了一个饱和回路,其中矫顽场和残余极化值分别为2.18 kV / cm和0.39μC / cm(2)。通过TGA和DSC研究来研究热行为。发现LNO的相对SHG效率是KDP晶体的1.2倍。在显微硬度研究中,发现迈耶的指数值为1.78,这表明其柔软性。生长晶体的这些光学,介电,压电,铁电,机械和非线性光学特性确定了该材料在光电,非易失性存储器和压电器件应用中的有用性。 (C)2015 Elsevier B.V.保留所有权利。

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