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首页> 外文期刊>Journal of Materials Science >Optical and dielectric properties of nitrophenolate based nonlinear optical crystal
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Optical and dielectric properties of nitrophenolate based nonlinear optical crystal

机译:硝基酚盐基非线性光学晶体的光学和介电性能

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A semi-organic nonlinear optical (NLO) material, lithium-p-nitrophenolate trihydrate (LPNP) was synthesized. Single crystals of dimensions 20 × 7 × 3 mm3 were harvested following the solvent evaporation technique. The functional groups present in the compound were identified from FT-IR and FT-Raman spectral analyses, and its molecular structure was confirmed. Identification of the compound was accomplished by X-ray diffraction technique (powder and single crystal XRD). The unit-cell dimensions and the morphology of the grown crystals were identified from single crystal XRD measurements. The thermal transport properties, thermal effusivity (e), thermal diffusivity (α), thermal conductivity (k) and heat capacity (C p) were measured by the photopyroelectric technique at room temperature. Dielectric constant and dielectric loss were also measured as a function of frequency between 42 Hz and 5 MHz, and temperature between 32 and 100 °C. From optical transmittance measurements, the direct optical band gap of the LPNP crystal was estimated to be 2.47 eV. Laser damage threshold is 60.91 GW cm−2. Powder second harmonic generation (SHG) measurement was carried out using a modified Kurtz–Perry technique. Third order nonlinear response was studied using Z-scan technique with a He–Ne laser (632.8 nm, 35 mW). The magnitude and the sign of the nonlinear absorption and nonlinear refraction are derived from a transmittance curve. The NLO parameters Intensity dependent refractive index n 2, nonlinear absorption coefficient β and third order susceptibility χ(3) were estimated.
机译:合成了半有机非线性光学(NLO)材料,对硝基苯酚锂三水合物(LPNP)。通过溶剂蒸发技术获得尺寸为20×7×3 mm 3 的单晶。通过FT-IR和FT-Raman光谱分析鉴定化合物中存在的官能团,并确认其分子结构。通过X射线衍射技术(粉末和单晶XRD)完成化合物的鉴定。从单晶XRD测量确定生长的晶体的晶胞尺寸和形态。在室温下通过光热电技术测量热传输性质,热效率(e),热扩散率(α),热导率(k)和热容(C p )。还测量了介电常数和介电损耗,它是介于42 Hz和5 MHz之间的频率以及介于32和100°C之间的温度的函数。根据透光率测量,LPNP晶体的直接光学带隙估计为2.47 eV。激光损伤阈值为60.91 GW cm -2 。使用改进的Kurtz-Perry技术进行了粉末二次谐波产生(SHG)测量。使用Z扫描技术和He-Ne激光(632.8 nm,35 mW)研究了三阶非线性响应。非线性吸收和非线性折射的大小和符号由透射率曲线得出。估算了NLO参数强度依赖折射率n 2 ,非线性吸收系数β和三阶磁化率χ(3)

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