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取代基对Criegee中间体与二氧化碳和一氧化碳反应的影响

Substituent Dependence on the Reactions of Criegee Intermediates with Carbon Dioxide and Carbon Monoxide.

作者信息

Takahashi Kaito

机构信息

Institute of Atomic and Molecular Sciences Academia Sinica, No 1., Sec. 4 Roosevelt Rd., Taipei, 10617, Taiwan.

出版信息

Chempluschem. 2023 Sep;88(9):e202300354. doi: 10.1002/cplu.202300354.

Abstract

Criegee intermediates (CIs), R R COO, are active molecules produced in the atmosphere from the ozonolysis of alkenes. Here, we systematically evaluated the reactivity of ten CIs with carbon monoxide and carbon dioxide using CCSD(T)-F12/cc-pVTZ-F12//B3LYP/6-311+G(2d,2p) energies and transition state theory. Many previous studies focused on alkyl substitution, but here we evaluated both alkyl and vinyl substitution toward the reactivity by studying five anti-type CIs: CH OO, anti-CH CHOO, anti-cis-C H CHOO, anti-trans-MACRO, anti-cis-MACRO; and five syn-type CIs: syn-CH CHOO, (CH ) COO, syn-trans-C H CHOO, syn-trans-MVKO, and syn-cis-MVKO. Our study showed that reactions involving CO have a large substituent dependence varying nearly five orders of magnitude, while those involving CO have a much smaller two orders of magnitude difference. Analysis based on the strain interaction model showed that deformation of the CI is an important feature in determining the reactivity with CO . On the other hand, we used the OO and CO bond ratios to analyze the zwitterionic character of the CIs. We found that vinyl substitution with π-conjugation results in smaller zwitterionic character and lower reactivity with CO. Lastly, the reactivity of CIs with CO as well as CO were found to be not fast enough to be important in an atmospheric context.

摘要

克里吉中间体(CIs),即RRCOO,是大气中烯烃臭氧分解产生的活性分子。在此,我们使用CCSD(T)-F12/cc-pVTZ-F12//B3LYP/6-311+G(2d,2p)能量和过渡态理论,系统评估了十种CIs与一氧化碳和二氧化碳的反应活性。许多先前的研究集中在烷基取代上,但在此我们通过研究五种反式CIs:CHOO、反式-CHCHOO、反式-顺式-C6HCHOO、反式-反式-MACRO、反式-顺式-MACRO;以及五种顺式CIs:顺式-CHCHOO、(CH3)2COO、顺式-反式-C6HCHOO、顺式-反式-MVKO和顺式-顺式-MVKO,评估了烷基和乙烯基取代对反应活性的影响。我们的研究表明,涉及CO的反应具有很大的取代基依赖性,变化近五个数量级,而涉及CO2的反应差异小得多,为两个数量级。基于应变相互作用模型的分析表明,CI的变形是决定其与CO2反应活性的一个重要特征。另一方面,我们使用OO和CO键比率来分析CIs的两性离子特征。我们发现,具有π共轭的乙烯基取代导致两性离子特征较小,与CO2的反应活性较低。最后,发现CIs与CO以及CO2的反应活性在大气环境中不够快,因而不重要。

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