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去芳构化叔硼酸酯中间体的非对映选择性[4+2]环加成和1,3-硼迁移的计算评估:通过过渡态畸变能解释反应性

Computational assessments of diastereoselective [4+2] cycloaddition and 1,3-borotopic shift of a dearomatized tertiary boronic ester intermediate: reactivities explained through transition-state distortion energies.

作者信息

Hussein Aqeel A, Almalki Faisal A, Alqahtani Alaa M, Shityakov Sergey

机构信息

Faculty of Dentistry, University of Al-Ameed Karbala P.O. No: 198 Iraq.

Department of Chemistry, University of Southampton Southampton Hampshire SO17 1BJ UK

出版信息

RSC Adv. 2019 Jul 26;9(40):23148-23155. doi: 10.1039/c9ra03820e. eCollection 2019 Jul 23.

Abstract

Interception of a dearomatized tertiary boronic ester, formed through a kinetically and thermodynamically favorable 1,2-metalate rearrangement/-S2' elimination of an activated -lithiated benzyl amine, in a [4+2] cycloaddition or 1,3-borotopic shift has been investigated by density functional theory (DFT). Although superacitvated "naked" Li was found to greatly promote 1,3-borotopic shift, the diastereoselective [4+2] cycloaddition was favored. It was revealed that the factor that controls the diastereoselectivity was the steric bulk provided by the diene, which is in agreement with experimental diastereoselectivity. A comparison of unreactive dienophiles such as maleic anhydride, diethyl maleate, and others with 4-phenyl-3-1,2,4-triazole-3,5(4)-dione (PTAD) was found to be in an excellent agreement with the experiments; where their lack of reactivity is attributed to the high deformation energies of the interacting components to achieve the transition state structure which was pronounced with the high energy of LUMO orbitals.

摘要

通过密度泛函理论(DFT)研究了在[4+2]环加成或1,3-硼迁移反应中,截获通过动力学和热力学有利的1,2-金属化重排/-S2'消除活化的锂化苄胺而形成的脱芳构化叔硼酸酯的情况。尽管发现超活化的“裸”锂极大地促进了1,3-硼迁移,但非对映选择性的[4+2]环加成反应更受青睐。结果表明,控制非对映选择性的因素是二烯提供的空间位阻,这与实验的非对映选择性一致。发现将马来酸酐、马来酸二乙酯等无反应性的亲双烯体与4-苯基-3-1,2,4-三唑-3,5(4)-二酮(PTAD)进行比较,与实验结果非常吻合;它们缺乏反应性归因于相互作用组分达到过渡态结构的高变形能,这在LUMO轨道的高能中表现明显。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf1/9067249/d11ad8b66fd5/c9ra03820e-s1.jpg

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