Molski Marcin
Quantum Chemistry Department, Faculty of Chemistry, Adam Mickiewicz University, Poznań, Poland, ul. Uniwersytetu Poznańskiego 8, 61-614, Poznań.
Heliyon. 2023 Jan 5;9(1):e12806. doi: 10.1016/j.heliyon.2023.e12806. eCollection 2023 Jan.
The global descriptors of the chemical activity: ionization potential IP, electron affinity EA, chemical potential μ, absolute electronegativity χ, molecular hardness η and softness S, electrophilicity index ω, electro-donating ω, electro-accepting ω powers as well as Ra and Rd indexes for gallic acid (GA) in the gas phase and water medium have been determined. To this aim, the HOMO and LUMO energies were calculated using the DFT method at the B3LYP, M06-2X, LC-ωPBE, BHandLYP, ωB97XD/cc-pVQZ theory levels using C-PCM, IEF-PCM and SMD solvation models, enabling more accurate descriptor calculations than those carried out so far. Quantum-chemical computations were also applied to investigate the GA structure and thermodynamic parameters characterizing its radical scavenging properties. To this aim, the full optimization of the neutral GA and its radical, cationic and anionic forms in vacuum and water medium has been performed, and then the bond dissociation enthalpy BDE, adiabatic ionization potential AIP, proton dissociation enthalpy PDE, proton affinity PA, electron transfer enthalpy ETE, gas phase acidity H and free Gibbs acidity G in water have been determined. The calculations revealed that GA in vacuum scavenges free radicals via hydrogen atom transfer (HAT), whereas in water (polar) medium by sequential proton loss electron transfer (SPLET). Analysis of the global activity descriptors of GA indicates that only B3LYP method combined with different solvation models satisfactory reproduces LUMO-HOMO energies and provides the smallest value of the total electron energy of GA. Among the parameters of chemical activity, the indexes Ra and Rd are the most independent of the computational method and the solvation model used. They can be recommended as a reliable source of information on the antioxidant activity of chemical compounds.
已确定了气相和水介质中没食子酸(GA)的化学活性全局描述符:电离势IP、电子亲和能EA、化学势μ、绝对电负性χ、分子硬度η和软度S、亲电性指数ω、给电子ω、吸电子ω能力以及Ra和Rd指数。为此,使用密度泛函理论(DFT)方法在B3LYP、M06 - 2X、LC - ωPBE、BHandLYP、ωB97XD/cc - pVQZ理论水平上,采用C - PCM、IEF - PCM和SMD溶剂化模型计算了最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)的能量,从而能够比迄今为止进行的计算更准确地计算描述符。量子化学计算还用于研究GA的结构及其表征自由基清除特性的热力学参数。为此,对中性GA及其自由基、阳离子和阴离子形式在真空和水介质中进行了完全优化,然后确定了键解离焓BDE、绝热电离势AIP、质子解离焓PDE、质子亲和能PA、电子转移焓ETE、气相酸度H和水中的自由吉布斯酸度G。计算结果表明,真空中的GA通过氢原子转移(HAT)清除自由基,而在水(极性)介质中则通过顺序质子损失电子转移(SPLET)。对GA全局活性描述符的分析表明,只有B3LYP方法与不同的溶剂化模型相结合才能令人满意地再现LUMO - HOMO能量,并提供GA总电子能量的最小值。在化学活性参数中,Ra和Rd指数最不依赖于所使用的计算方法和溶剂化模型。它们可被推荐为有关化合物抗氧化活性的可靠信息来源。