Department of Physics, Afyon Kocatepe University, Afyonkarahisar, Turkey.
Spectrochim Acta A Mol Biomol Spectrosc. 2011 Dec;83(1):561-9. doi: 10.1016/j.saa.2011.09.003. Epub 2011 Sep 9.
This study reports the characterization of disperse red 1 acrylate compound by spectral techniques and quantum chemical calculations. The spectroscopic properties were analyzed by FT-IR, UV-vis, (1)H NMR and (13)C NMR techniques. FT-IR spectrum in solid state was recorded in the region 4000-400 cm(-1). The UV-vis absorption spectrum of the compound that dissolved in methanol was recorded in the range of 200-800 nm. The (1)H and (13)C NMR spectra were recorded in CDCl(3) solution. The structural and spectroscopic data of the molecule in the ground state were calculated using density functional theory (DFT) employing B3LYP exchange correlation and the 6-311++G(d,p) basis set. The vibrational wavenumbers were calculated and scaled values were compared with experimental FT-IR spectrum. A satisfactory consistency between the experimental and theoretical spectra was obtained and it shows that the hybrid DFT method is very useful in predicting accurate vibrational structure, especially for high-frequency region. The complete assignments were performed on the basis of the experimental results and total energy distribution (TED) of the vibrational modes, calculated with scaled quantum mechanics (SQM) method. Isotropic chemical shifts were calculated using the gauge-invariant atomic orbital (GIAO) method. A study on the electronic properties were performed by timedependent DFT (TD-DFT) and CIS(D) approach. To investigate non linear optical properties, the electric dipole moment μ, polarizability α, anisotropy of polarizability Δα and molecular first hyperpolarizability β were computed. The linear polarizabilities and first hyperpolarizabilities of the studied molecule indicate that the compound can be a good candidate of nonlinear optical materials.
这项研究通过光谱技术和量子化学计算对分散红 1 丙烯酸酯化合物进行了表征。通过傅里叶变换红外光谱(FT-IR)、紫外可见光谱(UV-vis)、(1)H NMR 和(13)C NMR 技术分析了光谱性质。在固态下记录了 FT-IR 光谱,其范围在 4000-400 cm(-1)之间。将化合物溶解在甲醇中的紫外可见吸收光谱在 200-800nm 范围内记录。(1)H 和(13)C NMR 光谱在 CDCl(3)溶液中记录。采用密度泛函理论(DFT),使用 B3LYP 交换相关和 6-311++G(d,p)基组,对分子在基态下的结构和光谱数据进行了计算。计算了振动波数,并将缩放值与实验 FT-IR 光谱进行了比较。实验和理论光谱之间得到了令人满意的一致性,表明混合 DFT 方法非常有助于预测准确的振动结构,特别是在高频区域。根据实验结果和振动模式的总能量分布(TED),使用比例量子力学(SQM)方法进行了完整的分配。使用规范不变原子轨道(GIAO)方法计算了各向同性化学位移。通过时变密度泛函(TD-DFT)和 CIS(D)方法研究了电子性质。为了研究非线性光学性质,计算了电偶极矩μ、极化率α、极化率各向异性Δα和分子第一超极化率β。研究分子的线性极化率和第一超极化率表明,该化合物可能是一种良好的非线性光学材料候选物。