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选定的1,3-偶极体与7-异亚丙基降冰片二烯的1,3-偶极环加成反应及后续热解裂解:一项计算研究。

1, 3-Dipolar cycloaddition reactions of selected 1,3-dipoles with 7-isopropylidenenorbornadiene and follow-up thermolytic cleavage: A computational study.

作者信息

Arhin Grace, Adams Anita Houston, 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. 2019 Nov;92:267-279. doi: 10.1016/j.jmgm.2019.08.004. Epub 2019 Aug 8.

Abstract

The mechanism, regio-, stereo-, and enantio-selectivities of the 1,3-dipolar cycloaddition reactions of 7-isopropylidenenorbornadiene (DENBD) with nitrones and azides to form pharmaceutically relevant isoxazolidine and triazole analogues have been studied computationally at the M06/6-31G(d), 6-31G(d,p), 6-311G(d,p), 6-311++G(d,p) and M06-2X/6-31G(d) levels of theory. In the reactions of DENBD with phenyl nitrones, the cycloaddition steps have low activation barriers, with the highest being 16 kcal/mol; and the Diels-Alder cycloreversion steps have generally high barriers, with the lowest being 20 kcal/mol, suggesting that the isolable products in these reactions are the bicyclic isoxazolidine cycloadducts and not the thermolytic products. This is in contrast to the reactions of DENBD with phenyl azide where the isolable products are predicted to be the thermolytic products since the Diels-Alder cycloreversion steps had relatively lower activation barriers. Electron-donating substituents on the dipolarophile substrate favour attack of the nitrone on the least hindered side of the DENBD substrate while electron-withdrawing substituents on the dipolarophile substrate favour attack on the more hindered side of the DENBD, indicating that site-selectivity is affected by nature of substituents. Global reactivity indices calculations are in good agreement with the activation barriers obtained. Analysis of the electrophilic (P) and nucleophilic (P) Parr functions at the reactive centres reveal that the cycloaddition occurs between atoms with the largest Mulliken and NBO atomic spin densities which agrees well with the energetic trends and the experimental product outcomes.

摘要

采用M06/6 - 31G(d)、6 - 31G(d,p)、6 - 311G(d,p)、6 - 311++G(d,p)以及M06 - 2X/6 - 31G(d)理论水平,对7 - 异亚丙基降冰片二烯(DENBD)与硝酮和叠氮化物发生1,3 - 偶极环加成反应生成具有药学相关性的异恶唑烷和三唑类似物的反应机理、区域选择性、立体选择性和对映选择性进行了计算研究。在DENBD与苯基硝酮的反应中,环加成步骤的活化能垒较低,最高为16 kcal/mol;而狄尔斯 - 阿尔德环化逆转步骤的能垒通常较高,最低为20 kcal/mol,这表明这些反应中可分离的产物是双环异恶唑烷环加成物而非热解产物。这与DENBD与苯基叠氮化物的反应形成对比,在该反应中,由于狄尔斯 - 阿尔德环化逆转步骤的活化能垒相对较低,预计可分离的产物是热解产物。亲偶极体底物上的供电子取代基有利于硝酮进攻DENBD底物受阻较小的一侧,而亲偶极体底物上的吸电子取代基有利于进攻DENBD受阻较大的一侧,这表明位点选择性受取代基性质的影响。全局反应性指数计算结果与所获得的活化能垒吻合良好。对反应中心的亲电(P)和亲核(P)帕尔函数分析表明,环加成发生在具有最大穆利肯和自然键轨道(NBO)原子自旋密度的原子之间,这与能量趋势和实验产物结果吻合得很好。

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