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C,N-二取代硝酮与二取代4-亚甲基-1,3-恶唑-5(4H)-酮的1,3-偶极环加成反应的周环、化学、区域、立体和对映选择性:量子力学研究

Peri-, Chemo-, Regio-, Stereo- and Enantio-Selectivities of 1,3-dipolar cycloaddition reaction of C,N-Disubstituted nitrones with disubstituted 4-methylene-1,3-oxazol-5(4H)- one: A quantum mechanical study.

作者信息

Pipim George Baffour, Opoku Ernest, Tia Richard, Adei Evans

机构信息

Theoretical and Computational Chemistry Laboratory, Department of Chemistry, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.

出版信息

J Mol Graph Model. 2020 Jun;97:107542. doi: 10.1016/j.jmgm.2020.107542. Epub 2020 Jan 21.

Abstract

The peri-, chemo-, regio-, stereo- and enantio-selectivities of 1,3-dipolar cycloaddition reaction of C,N-disubstituted nitrones with disubstituted 4-methylene-1,3-oxazol-5(4H)-one have been studied using density functional theory (DFT) at the M06-2X/6-311G (d,p) level of theory. The 1,3-dipole preferentially adds chemo-selectively across the olefinic bond in a (3 + 2) fashion forming the corresponding spirocycloadduct. The titled reaction occurs with poor enantio- and stereo-selectivities, but a high degree of regio-selectivity is observed for the addition of the 1,3-dipole across the dipolarophile. Electron-withdrawing groups on the dipolarophile significantly reduce the activation barriers while electron-donating groups on the dipolarophile increase the activation barriers. Analysis of the HOMO and LUMO energies of the two reacting species indicates that the 1,3-dipole reacts as a nucleophile while the dipolarophile reacts as the electrophile. Investigation of the electrophilic Parr function (P) at the various reaction centers in the dipolarophile indicates that the 1,3-dipole selectively adds across the atomic species with the largest electrophilic Mulliken and NBO atomic spin densities which is in accordance with the energetic trends observed.

摘要

在M06 - 2X/6 - 311G(d,p)理论水平下,采用密度泛函理论(DFT)研究了C,N - 二取代硝酮与二取代4 - 亚甲基 - 1,3 - 恶唑 - 5(4H) - 酮的1,3 - 偶极环加成反应的周环、化学、区域、立体和对映选择性。1,3 - 偶极子优先以(3 + 2)方式化学选择性地加成到烯烃键上,形成相应的螺环加合物。该反应的对映选择性和立体选择性较差,但在1,3 - 偶极子加成到亲偶极体上时观察到高度的区域选择性。亲偶极体上的吸电子基团显著降低了活化能垒,而亲偶极体上的供电子基团则增加了活化能垒。对两种反应物的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)能量的分析表明,1,3 - 偶极子作为亲核试剂反应,而亲偶极体作为亲电试剂反应。对亲偶极体中各个反应中心的亲电帕尔函数(P)的研究表明,1,3 - 偶极子选择性地加成到具有最大亲电穆利肯和自然键轨道(NBO)原子自旋密度的原子物种上,这与观察到的能量趋势一致。

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