首页> 外文期刊>Bulletin of the Korean Chemical Society >Quantum-Chemical Studies to Approach the Antioxidant Mechanism of Nonphenolic Hydrazone Schiff Base Analogs: Synthesis, Molecular Structure, Hirshfeld and Density Functional Theory Analyses
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Quantum-Chemical Studies to Approach the Antioxidant Mechanism of Nonphenolic Hydrazone Schiff Base Analogs: Synthesis, Molecular Structure, Hirshfeld and Density Functional Theory Analyses

机译:非酚Hy席夫碱类似物抗氧化机理的量子化学研究:合成,分子结构,Hirshfeld和密度泛函理论分析

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In the present study, five nonphenolic (E)-N'-benzylidenebenzohydrazides including three new compounds were synthesized and evaluated for their free radical scavenging activities using 2,2-diphenyl-1-picrylhydrazyl (DPPH). X-Ray analysis of a single crystal of (E)-N'-(4-chlorobenzylidene) benzohydrazide (3c) revealed a triclinic, space group P-1 structure with a trans configuration around the azomethine (-C2=N2-) double bond. The three-dimensional Hirshfeld surfaces and the related two-dimensional fingerprint plots were also drawn to study the plausible intermolecular interactions. Density functional calculations of structures, electronic densities, frontier molecular orbitals modeling, and Mulliken charge analysis of all compounds were performed at the B3LYP/6-311G level of theory. Theoretical vibrational frequencies were predicted and compared with experimental values, and results supported the validity of optimized geometry of noncrystalline compounds. All synthesized compounds showed significant DPPH radical scavenging activity, although compound 3d exhibited greatest antioxidant activity with an IC50 value of 11 mu M. The results of DFT analysis were used to explain the proposed antioxidant mechanism of (E)-N'-benzylidenebenzohydrazide analogs. This analysis revealed that protons attached to N, O, and C atoms possessing high negative charge are involved in the production of free radicals that scavenge DPPH. Moreover, the antioxidant activities of (E)-N'-benzylidenebenzohydrazide analogs correlated well with HOMO-LUMO energy difference of molecules.
机译:在本研究中,合成了5种非酚(E)-N'-亚苄基苯并肼,包括3种新化合物,并使用2,2-二苯基-1-吡啶并肼(DPPH)评估了它们的自由基清除活性。对(E)-N'-(4-氯亚苄基)苯并肼(3c)的单晶进行X射线分析,发现三唑空间群P-1结构在偶氮甲碱(-C2 = N2-)双周围具有反式构型键。还绘制了三维Hirshfeld表面和相关的二维指纹图,以研究可能的分子间相互作用。结构的密度泛函计算,电子密度,前沿分子轨道建模以及所有化合物的Mulliken电荷分析均在B3LYP / 6-311G理论水平上进行。理论振动频率进行了预测并与实验值进行了比较,结果支持了非晶态化合物优化几何构型的有效性。所有合成的化合物均显示出显着的DPPH自由基清除活性,尽管化合物3d表现出最大的抗氧化活性,IC50值为11μM。DFT分析的结果用于解释提出的(E)-N'-亚苄基苯并肼类似物的抗氧化机理。该分析表明,附着在具有高负电荷的N,O和C原子上的质子参与清除DPPH的自由基的产生。此外,(E)-N'-亚苄基苯并肼类似物的抗氧化活性与分子的HOMO-LUMO能量差密切相关。

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