Department of Physics, Sri Venkateswara College of Engg., Sriperumbudur 602 105, India.
Research Scholar, Research and Development Centre, Bharathiar University, Coimbatore 641046, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2014;121:394-403. doi: 10.1016/j.saa.2013.10.093. Epub 2013 Oct 30.
The Fourier transform infrared (FT-IR) and FT-Raman of (1R)-N-(Prop-2-yn-1-yl)-2,3-dihydro-1H-inden-1-amine (1RNPDA) were recorded in the regions 4000-400 cm(-1) and 4000-100 cm(-1) respectively. A complete assignment and analysis of the fundamental vibrational modes of the molecule were carried out. The observed fundamental modes have been compared with the harmonic vibrational frequencies computed using HF method by employing 6-31G(d,p) basis set and DFT(B3LYP) method by employing 6-31G(d,p) basis set. The vibrational studies were interpreted in terms of Potential Energy Distribution (PED). The complete vibrational frequency assignments were made by Normal Co-ordinate Analysis (NCA) following the scaled quantum mechanical force field methodology (SQMFF). The first order hyper polarizability (β0) of this molecular system and related properties (α, μ, and Δα) are calculated using B3LYP/6-31G(d,p) method based on the finite-field approach. The thermodynamic functions of the title compound were also performed at the above methods and basis set. A detailed interpretation of the infrared and Raman spectra of 1RNPDA is reported. The (1)H and (13)C nuclear magnetic resonance (NMR) chemical shifts of the molecule were calculated using the GIAO method confirms with the experimental values. Stability of the molecule arising from hyper-conjugative interactions and charge delocalization has been analyzed using Natural Bond Orbital (NBO) analysis. UV-vis spectrum of the compound was recorded and electronic properties such as excitation energies, oscillator strength and wavelength were performed by TD-DFT/B3LYP using 6-31G(d,p) basis set. The HOMO and LUMO energy gap reveals that the energy gap reflects the chemical activity of the molecule. The observed and calculated wave numbers are formed to be in good agreement. The experimental spectra also coincide satisfactorily with those of theoretically constructed spectra.
(1R)-N-(丙炔-1-基)-2,3-二氢-1H-茚-1-胺(1RNPDA)的傅里叶变换红外(FT-IR)和 FT-Raman 光谱分别在 4000-400 cm(-1) 和 4000-100 cm(-1) 范围内记录。对分子的基本振动模式进行了完整的分配和分析。观察到的基本模式与使用 HF 方法通过使用 6-31G(d,p)基组和 DFT(B3LYP)方法通过使用 6-31G(d,p)基组计算的谐波振动频率进行了比较。振动研究是根据势能分布(PED)进行解释的。通过使用标准量子力学力场方法(SQMFF)进行规范坐标分析(NCA),对完整的振动频率分配进行了处理。使用 B3LYP/6-31G(d,p)方法基于有限场方法计算了该分子系统的一阶超极化率(β0)及其相关性质(α、μ和Δα)。在上述方法和基组上还进行了标题化合物的热力学函数的计算。报道了 1RNPDA 的红外和拉曼光谱的详细解释。通过 GIAO 方法计算的分子的(1)H 和(13)C 核磁共振(NMR)化学位移与实验值相符。使用自然键轨道(NBO)分析研究了超共轭相互作用和电荷离域导致的分子稳定性。记录了化合物的紫外可见光谱,并通过 TD-DFT/B3LYP 使用 6-31G(d,p)基组对激发能、振子强度和波长等电子性质进行了计算。HOMO 和 LUMO 能隙表明能量隙反映了分子的化学活性。观察到的和计算出的波数之间形成了良好的一致性。实验光谱也与理论构建的光谱吻合得很好。