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用取代基扰动π电子云以研究对gauche-1,3-丁二烯至双环丁烷电环化反应动力学的影响。

Perturbing π-clouds with Substituents to Study the Effects on Reaction Dynamics of gauche-1,3-Butadiene to Bicyclobutane Electrocyclization.

作者信息

Kalita Papu, Medhi Biman, Singh Haobam Kisan, Bhattacharyya Himangshu Pratim, Gupt Nikhil, Sarma Manabendra

机构信息

Department of Chemistry, Indian Institute of Technology Guwahati, Assam, 781039, Indian.

Current Address: Indian Institute of Technology Kanpur, Uttar Pradesh, 208016, Indian.

出版信息

Chemphyschem. 2023 Feb 1;24(3):e202200727. doi: 10.1002/cphc.202200727. Epub 2022 Nov 22.

Abstract

The conical intersection (CI) governs the ultra-fast relaxation of excited states in a radiationless manner and are observed mainly in photochemical processes. In the current work, we investigated the effects of substituents on the reaction dynamics for the conversion of gauche-1,3-butadiene to bicyclobutane via photochemical electrocyclization. We incorporated both electron withdrawing (-F) and donating (-CH ) groups in the conjugated system. In our study, we optimized the minimum energy conical intersection (MECI) geometries using the multi-configurational state-averaged CASSCF approach, whereas, to study the ground state reaction pathways for the substituted derivatives, dispersion corrected, B3LYP-D3 functional was used. The non-adiabatic surface hopping molecular dynamics simulations were performed to observe the behaviour of electronic states involved throughout the photoconversion process. The results obtained from the multi-reference second-order perturbation correction of energy at the XMS-CASPT2 level of theory, topography analysis, and non-adiabatic dynamics suggest that the -CH substituted derivatives can undergo faster thermal conversion to the product in the ground state with a smaller activation energy barrier compared to -F substituted derivative. Our study also reveals that the GBUT to BIBUT conversion follows both conrotatory and disrotatory pathways, whereas, on substitution with -F or -CH , the conversion proceeds via the conrotatory pathway.

摘要

锥形交叉点(CI)以无辐射的方式控制激发态的超快弛豫,主要在光化学过程中观察到。在当前工作中,我们研究了取代基对通过光化学电环化将反式-1,3-丁二烯转化为双环丁烷的反应动力学的影响。我们在共轭体系中引入了吸电子(-F)和供电子(-CH)基团。在我们的研究中,我们使用多组态状态平均CASSCF方法优化了最低能量锥形交叉点(MECI)的几何结构,而对于取代衍生物的基态反应途径,使用了色散校正的B3LYP-D3泛函。进行了非绝热表面跳跃分子动力学模拟,以观察整个光转化过程中涉及的电子态的行为。从理论的XMS-CASPT2水平的多参考二阶微扰能量校正、地形分析和非绝热动力学获得的结果表明,与-F取代衍生物相比,-CH取代衍生物在基态下可以以较小的活化能垒更快地热转化为产物。我们的研究还表明,GBUT到BIBUT的转化遵循顺旋和对旋途径,而在用-F或-CH取代时,转化通过顺旋途径进行。

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