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Harmine derivatives: a comprehensive quantum chemical investigation of the structural, electronic (FMO, NBO, and MEP), and spectroscopic (FT-IR and UV-Vis) properties

机译:Harnine衍生物:结构,电子(FMO,NBO和MEP)的综合量子化学研究,以及光谱(FT-IR和UV-Vis)性能

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The harmine derivatives were comprehensively investigated by computational tools to predict the structural, electronic, and spectroscopic properties as well as the chemical reactivity behavior. Physicochemical parameters showed that the harmine derivatives (H2 and H4) containing the -OH group at 2-position were more stabilized with the solvent dielectric constant than those of the other compounds (H1 and H3) including the -OCH3 substitution at 2-position. The PED analysis was used to assign the vibrational modes of all stable conformers of the harmine derivatives. TD-DFT simulations revealed that the lowest energy excitations were related to the H -> L transition, which was mainly characterized by n -> pi* for H1 and H2 compounds and pi -> pi* for H3 and H4 compounds. According to NBO analysis results, the highest contribution to the lowering of the molecular stabilization energy for all compounds was mainly due to the intramolecular charge transfer from the lone pair of the N atom as a donor orbital to pi* as an acceptor orbital. Global reactivity descriptors obtained from B3LYP/6-311++G(d,p) level implied that the trans-conformers of the studied compounds could be relatively more effective in their interaction with DNA, while the cis-conformers of them could be more eager to interact with the BSA molecule.
机译:通过计算工具综合研究了谐波衍生物,以预测结构,电子和光谱性能以及化学反应性行为。物理化学参数表明,在2-位的其他化合物(H1和H3)的溶剂介电常数,将含有-OH基团的溶剂衍生物(H2和H4)更稳定,其在2-位在2-位。 PED分析用于分配Harnine衍生物的所有稳定均方的振动模式。 TD-DFT模拟显示,最低能量激发与H - > L转变有关,主要表征为H1和H2化合物的N - > Pi *,H3和H4化合物的PI - > Pi *。根据NBO分析结果,对所有化合物的分子稳定能量降低的最高贡献主要是由于从孤独的N原子的分子内电荷转移为PI *作为受体轨道的供体轨道。从B3Lyp / 6-311 ++ g(d,p)水平获得的全局反应性描述符暗示所研究的化合物的反式塑壳在与DNA的相互作用中可以相对较为有效,而它们的顺式符合子可能更多渴望与BSA分子互动。

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