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首页> 外文期刊>Optical Materials >Growth, effect of protonation and hydrogen bonding interactions of L-Histidine nitrate monohydrate, a potential semi organic third order nonlinear optical material
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Growth, effect of protonation and hydrogen bonding interactions of L-Histidine nitrate monohydrate, a potential semi organic third order nonlinear optical material

机译:L-组氨酸一水合硝酸盐的生长,质子化作用和氢键相互作用,一种潜在的半有机三阶非线性光学材料

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Single crystal of L-Histidine Nitrate monohydrate (LHNM) has been grown from aqueous solution by evaporation technique. A comprehensive investigation of the NIR FT-Raman and FT-IR spectra was carried out with the aid of normal coordinate analysis following the scaled quantum mechanical force field methodology supported by the density functional theory (DFT) computations to analyze the effects of intramolecular charge transfer on the geometries and the vibrational modes contributing to the linear electro-optic effect of the organic NLO material. Effect of protonation and hydrogen bonding interactions has been analyzed using structural analysis, natural bond orbital analysis, and spectral analysis. The HOMO-LUMO energy gap value suggests the possibility of charge transfer within the molecule. Hyperconjugative interactions responsible for second hyperpolarizabilities have been described by NBO and AIM analyses. Hirshfeld surface analysis reveals that the van der Waals H center dot center dot center dot H (32.3%) contact plays a significant role in crystal packing and that a variety of N-H center dot center dot center dot O intermolecular contacts and hydrogen bonds leads to the formation of intermolecular charge transfer occurring in LHNM. The nonlinear refractive index (n(2)), nonlinear absorption coefficient (beta) and third-order nonlinear susceptibility (chi(3)) of LHNM have been determined by Z-scan technique, which points to its potential application in the field of optical limiting. The calculated value of laser damage threshold was 2.04 GW/cm(2).
机译:硝酸L-组氨酸一水合物(LHNM)的单晶已通过蒸发技术从水溶液中生长出来。根据密度泛函理论(DFT)计算支持的缩放量子力学力场方法,借助正态坐标分析对NIR FT-拉曼光谱和FT-IR光谱进行了全面研究,以分析分子内电荷转移的影响几何形状和振动模式对有机NLO材料的线性电光效应有贡献。已经使用结构分析,自然键轨道分析和光谱分析来分析质子化和氢键相互作用的影响。 HOMO-LUMO能隙值表明分子内电荷转移的可能性。 NBO和AIM分析已经描述了导致第二次超极化的超共轭相互作用。 Hirshfeld表面分析表明,范德华H中心点中心点中心点H(32.3%)接触在晶体堆积中起重要作用,并且各种NH中心点中心点中心点O之间的分子间接触和氢键导致LHNM中发生分子间电荷转移的形成。通过Z扫描技术确定了LHNM的非线性折射率(n(2)),非线性吸收系数(beta)和三阶非线性磁化率(chi(3)),这表明其在HHNM领域的潜在应用光学限制。激光损伤阈值的计算值为2.04 GW / cm(2)。

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