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A DFT study on effectiveness of position of carbonyl group in chalcone derivatives

机译:碳基衍生物中羰基位置有效性的DFT研究

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In the present paper effect of carbonyl group positionon the NLO response of selected chalcone derivatives has been discussed. The position of carbonyl group in chalcone chromophores plays a vital role in enhancing the NLO behavior of chalcones. To provide a strategy to enhance NLO response the theoretical calculations were carried out using density functional theory by employing B3LYP/6-31G(d) level of theory. The DFT calculations were carried out on eight chalcones with carbonyl group at different location in combination with donorgroup. The DFT results suggest that depending on the position of carbonyl group one can possibly use thiophene and benzene as electron donor/acceptor in NLO chromophores design. Also the donor group placed on phenyl ring is more effective to enhance NLO property in comparison with donor group substituted at thiophene ring. We also demonstrate that position of carbonyl group in chalcones can alter the nature of charge transfer from D-π-A-π-D toD-π-Asystem. The flexibility to change the nature of charge transfer gives great opportunity to tune the NLO and physical properties of chalcone derivatives.
机译:在本文的碳基效果中,讨论了所选硫酮衍生物的NLO响应。 Chalcone发色小团中的羰基的位置在提高Chalcones的NLO行为方面发挥着至关重要的作用。为了提供增强NLO的策略,通过使用B3LYP / 6-31G(D)理论水平,使用密度函数理论进行理论计算。 DFT计算在八个含有羰基的八个碳酸库中进行,不同地点与供体组合。 DFT结果表明,取决于羰基的位置,可以在NLO发色团设计中使用噻吩和苯作为电子供体/受体。此外,在苯环上置于苯环上的供体组与在噻吩环上取代的供体基团相比,增强NLO性能。我们还表明Chalcones中的羰基的位置可以改变来自D-π-A-π-D TOD-π-系的电荷转移的性质。改变电荷转移性质的灵活性使得调整Chalcone衍生物的NLO和物理性质的绝佳机会。

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