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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >First-Principle Protocol for Calculating Ionization Energies and Redox Potentials of Solvated Molecules and Ions: Theory and Application to Aqueous Phenol and Phenolate
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First-Principle Protocol for Calculating Ionization Energies and Redox Potentials of Solvated Molecules and Ions: Theory and Application to Aqueous Phenol and Phenolate

机译:计算溶剂化分子和离子的电离能和氧化还原电位的第一性原理协议:水溶液和苯酚和酚盐的理论和应用

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摘要

The effect of hydration on the lowest vertical ionization energy (VIE) of phenol and phenolate solvated in bulk water was characterized using the equation-of-motion ionization potential coupled-cluster (EOM-IP-CCSD) and effective fragment potential (EFP) methods (referred to as EOM/EFP) and determined experimentally by valence photoemission measurements using microjets and synchrotron radiation. The computed solvent-induced shifts in VIEs (AVIEs) are -0.66 and +5.72 eV for phenol and phenolate, respectively. Our best estimates of the absolute values of VIEs (7.9 and 7.7 eV for phenol and phenolate) agree reasonablywell with the respective experimental values (7.8 ± 0.1 and 7.1 ± 0.1 eV). The EOM/EFP scheme was benchmarked against full EOM-IP-CCSD using microsolvated phenol and phenolate clusters. A protocol for calculating redox potentials with EOM/EFP was developed based on linear response approximation (LRA) of free energy determination. The oxidation potentials of phenol and phenolate calculated using LRA and EOM/EFP are 1.32 and 0.89 V, respectively; they agree well with experimental values.
机译:使用运动方程电离电势耦合簇(EOM-IP-CCSD)和有效碎片电势(EFP)方法表征了水合对散装水中苯酚和酚盐的最低垂直电离能(VIE)的影响(称为EOM / EFP),并通过使用微射流和同步加速器辐射的化合价光电发射实验确定。 VIE(AVIEs)中溶剂诱导的位移的计算值分别为酚和酚酸酯-0.66和+5.72 eV。我们对VIE绝对值的最佳估计(苯酚和酚盐的7.9和7.7 eV)与各自的实验值(7.8±0.1和7.1±0.1 eV)相当吻合。 EOM / EFP方案使用微溶剂化苯酚和酚盐簇相对于完整EOM-IP-CCSD进行了基准测试。基于自由能测定的线性响应近似(LRA),开发了一种使用EOM / EFP计算氧化还原电势的协议。用LRA和EOM / EFP计算得到的苯酚和苯酚盐的氧化电位分别为1.32和0.89V。他们与实验值非常吻合。

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