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使用多水平(G4和G3B3)、B3LYP和MP2计算方法对对位取代苯甲醛化合物的质子亲和能和气相碱度进行基准计算。

Benchmark calculations of proton affinity and gas-phase basicity using multilevel (G4 and G3B3), B3LYP and MP2 computational methods of para-substituted benzaldehyde compounds.

作者信息

Safi Zaki S, Wazzan Nuha

机构信息

Chemistry Department, Faculty of Science, Al Azhar University-Gaza, Gaza, Palestine.

Chemistry Department, Faculty of Science, King Abdulaziz University, Jeddah, Saudi Arabia.

出版信息

J Comput Chem. 2021 Jun 15;42(16):1106-1117. doi: 10.1002/jcc.26538. Epub 2021 Apr 19.

DOI:10.1002/jcc.26538
PMID:33871092
Abstract

This study presents the benchmark calculations of proton affinities (PAs) and gas-phase basicities (GBs) of 8-para substituted benzaldehyde compounds using the multilevel model chemistries (G3B3 and G4), density-functional quantum model (B3LYP) and ab initio model (MP2). The results show that the computed properties are strongly correlated with the available experimental data. The PAs and the GBs of other eight para-substituted benzaldehyde compounds, for which the experimental data does not currently exist, have been calculated using G3B3 and B3LYP methods. The correlations between the experimental PAs and GBs with the computed properties such as PA, GB, chemical properties (bond lengths, electron density and δ H NMR chemical shift) of the investigated benzaldehydes have been studied and statistically analyzed. The influence of the substituted groups has been discussed in terms of inductive effect and electron donating and electron withdrawing effect. The results obtained show that the chemical properties of the benzaldehyde compounds are controlled by the strong coupling between the CHO group and the nature of the para-substituent groups through the benzene ring as a conducting linkage.

摘要

本研究采用多水平模型化学方法(G3B3和G4)、密度泛函量子模型(B3LYP)和从头算模型(MP2),对8种对位取代苯甲醛化合物的质子亲和势(PAs)和气相碱度(GBs)进行了基准计算。结果表明,计算得到的性质与现有的实验数据高度相关。使用G3B3和B3LYP方法计算了目前尚无实验数据的其他8种对位取代苯甲醛化合物的PAs和GBs。研究并统计分析了实验得到的PAs和GBs与所研究苯甲醛的计算性质(如PA、GB、化学性质(键长、电子密度和δ H NMR化学位移))之间的相关性。从诱导效应、供电子和吸电子效应方面讨论了取代基的影响。所得结果表明,苯甲醛化合物的化学性质是通过苯环作为传导键,由醛基(CHO)与对位取代基的性质之间的强耦合作用所控制的。

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