Research and Development Centre, Bharathiar University, Coimbatore, 641046, Tamilnadu, India; Department of Physics, Meenakshi College for Women, Chennai, 600024, Tamilnadu, India.
Department of Physics, Women's Christian College, Chennai, 600006, Tamilnadu, India.
Comput Biol Chem. 2020 Jun;86:107226. doi: 10.1016/j.compbiolchem.2020.107226. Epub 2020 Feb 27.
The heterocyclic aromatic compounds are primarily used to make pharmaceutical and agrochemicals. In addition, these compounds can be chosen as antioxidants, corrosion inhibitors, electro and opto-electronic devices, polymer material, dye stuff, developers, etc. On the account of this, the heterocyclic aromatic 6-nitro-2,3-dihydro-1,4-benzodioxine (6N3DB) was chosen and the structure is optimized to predict the important properties of it. The structural parameters such as bond length and bond angle have been obtained by DFT/B3LYP/6-311++G(d,p) basis set to know the geometry and orientation of 6N3DB. The molecule has been characterized by FT-IR and FT-Raman spectroscopic techniques to predict the functional groups, vibrational modes and aromatic nature of 6N3DB. The chemical shifts of H and C have been obtained experimentally and compared with the theoretical data. The parameters such as the band gap between HOMO-LUMO orbitals, λ and electron transition probability in frontier orbitals have been estimated to know the NLO and corrosion inhibition activity. HOMO-LUMO orbital diagram has been obtained for different energy levels and their band gap energies have been compared with UV-vis band gap values. The chemical significance of the molecule has been explained using ELF, LOL, and RDG. The binding energy and intermolecular energy values indicate that the title compound possesses anti-cancer property through hydrolase inhibition activity.
杂环芳烃化合物主要用于制造医药和农用化学品。此外,这些化合物还可以用作抗氧化剂、腐蚀抑制剂、电和光电子器件、聚合物材料、染料、显影剂等。鉴于此,选择了杂环芳烃 6-硝基-2,3-二氢-1,4-苯并二恶嗪(6N3DB),并对其结构进行了优化,以预测其重要性质。通过 DFT/B3LYP/6-311++G(d,p)基组获得了键长和键角等结构参数,以了解 6N3DB 的几何形状和取向。通过 FT-IR 和 FT-Raman 光谱技术对分子进行了表征,以预测 6N3DB 的官能团、振动模式和芳香性质。通过实验获得了 H 和 C 的化学位移,并与理论数据进行了比较。通过估计 HOMO-LUMO 轨道之间的能带隙、λ 和前沿轨道中的电子跃迁概率等参数,来了解 NLO 和腐蚀抑制活性。获得了不同能级的 HOMO-LUMO 轨道图,并比较了它们的能带隙能量与 UV-vis 带隙值。使用 ELF、LOL 和 RDG 解释了分子的化学意义。结合能和分子间能量值表明,该标题化合物通过水解酶抑制活性具有抗癌特性。