GEOMETRY OPTIMIZATION OF COUPLING ALLIN -METFORMIN USING DFT/B3LYP MOLECULAR MODELLING TECHNIQUE

لقاء حسين كاظم
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Abstract

This researchpaper includes the incorporation of Alliin at various energy levels and angles With Metformin using Gaussian 09 and Gaussian view 06. Two computers were used in this work. Samples were generated to draw, integrate, simulate and measure the value of the potential energy surface by means of which the lowest energy value was (-1227.408au). The best correlation compound was achieved between Alliin and Metformin through the low energy values where the best place for metformin to bind was through (CH2-). This is considered to be very useful for the industrial application of drugs. This level of calculation was used for physical and quantum properties such as total energy, HOMO and LUMO orbitals energies, and power gap. Besides, the calculation of FT-IR spectra in the range 400-4000 cm-1 was calculated in addition to the essential vibrational frequencies and the intensity of the vibrational bands. Moreover, the chemical displacement of the 1H and 13C NMR of the compound in the ground state was studied.
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基于dft / b3lyp分子建模技术的allin -二甲双胍偶联的几何优化
本研究采用高斯09和高斯视图06将Alliin在不同能级和角度与二甲双胍结合。在这项工作中使用了两台计算机。生成样品,绘制、积分、模拟和测量势能面值,最低能量值为(-1227.408au)。Alliin与Metformin通过低能量值获得最佳的相关化合物,其中Metformin结合的最佳位置是通过(CH2-)。这被认为对药物的工业应用非常有用。这个级别的计算用于计算物理和量子性质,如总能量、HOMO和LUMO轨道能量和能量间隙。此外,计算了400-4000 cm-1范围内的FT-IR光谱,并计算了基本振动频率和振动带强度。此外,还研究了化合物在基态下的1H和13C NMR的化学位移。
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