Study of gas-phase O–H bond dissociation enthalpies and ionization potentials of substituted phenols – Applicability of ab initio and DFT/B3LYP methods

IF 2.4 3区 化学 Q4 CHEMISTRY, PHYSICAL Chemical Physics Pub Date : 2006-11-21 DOI:10.1016/j.chemphys.2006.09.026
Erik Klein, Vladimír Lukeš
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引用次数: 78

Abstract

In this paper, the study of phenol and 37 compounds representing various ortho-, para-, and meta-substituted phenols is presented. Molecules and their radical structures were studied using ab initio methods with inclusion of correlation energy and DFT in order to calculate the O–H bond dissociation enthalpies (BDEs) and vertical ionization potentials (IPs). Calculated BDEs and IPs were compared with available experimental values to ascertain the suitability of used methods, especially for the description of the substituent induced changes in BDE and IP. MP2, MP3, and MP4 methods do not give reliable results, since they significantly underestimate substituent induced changes in BDE and do not reflect distinct effect of substituents related to para and meta position correctly. DFT/B3LYP method reflects the effect of substituents on BDE satisfactorily, though ΔBDEs are in narrower range than experimental values. BDE of phenol was calculated also using CCSD(T) method in various basis sets. Both, DFT and HF methods describe the effect of substituents on IP identically. However, DFT considerably underestimates individual values. HF method gives IPs in very good agreement with experimental data. Obtained results show that dependences of BDEs and IPs on Hammett constants of the substituents are linear. Linearity of DFT BDE vs. IP dependence is even better than the dependences on Hammett constants and obtained equations allow estimating of O–H BDEs of meta- and para-substituted phenols from calculated IPs.

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取代苯酚气相O-H键解离焓和电离势的研究——从头算和DFT/B3LYP方法的适用性
本文介绍了苯酚和37种不同邻位、对位和间取代苯酚的化合物的研究。采用包含相关能和DFT的从头算方法研究了分子及其自由基结构,计算了O-H键解离焓(BDEs)和垂直电离势(IPs)。将计算的BDE和IP与现有的实验值进行比较,以确定所使用方法的适用性,特别是对取代基引起的BDE和IP变化的描述。MP2、MP3和MP4方法不能给出可靠的结果,因为它们明显低估了取代基引起的BDE变化,并且不能正确反映取代基对para和meta位置的明显影响。DFT/B3LYP方法较好地反映了取代基对BDE的影响,但ΔBDEs的取值范围较实验值窄。用CCSD(T)法计算了不同基组苯酚的BDE。DFT方法和HF方法对取代基对IP的影响描述一致。然而,DFT在很大程度上低估了个体价值。HF方法得到的ip值与实验数据吻合较好。结果表明,BDEs和ip与取代基的Hammett常数呈线性关系。DFT BDE与IP依赖的线性关系甚至比对Hammett常数的依赖更好,并且获得的方程允许从计算的IP估计间和对取代酚的O-H BDE。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemical Physics
Chemical Physics 化学-物理:原子、分子和化学物理
CiteScore
4.60
自引率
4.30%
发文量
278
审稿时长
39 days
期刊介绍: Chemical Physics publishes experimental and theoretical papers on all aspects of chemical physics. In this journal, experiments are related to theory, and in turn theoretical papers are related to present or future experiments. Subjects covered include: spectroscopy and molecular structure, interacting systems, relaxation phenomena, biological systems, materials, fundamental problems in molecular reactivity, molecular quantum theory and statistical mechanics. Computational chemistry studies of routine character are not appropriate for this journal.
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