State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, College of Chemistry and Chemical Engineering, Lanzhou University , 222 South Tianshui Road, 730000, Lanzhou, P. R. China.
J Org Chem. 2017 Mar 17;82(6):3046-3061. doi: 10.1021/acs.joc.7b00026. Epub 2017 Mar 7.
The Diels-Alder reaction between 3-vinylindoles and methyleneindolinone can proceed both under catalyst-free conditions and with bisthiourea as the catalyst. The reaction with bisthiourea is much faster and results in higher stereoselectivity of the product. The reaction mechanism, origin of stereoselectivity, and role of the catalyst were elaborated based on quantum mechanical calculations and theoretical methods of reactivity indices, NCI, QTAIM, and distortion/interaction models. In the uncatalyzed reaction, the two C-C bonds that are formed undergo conversion from noncovalent to covalent bonding via a concerted asynchronous mechanism. The weak intermolecular interactions formed in the transition state play important roles. The difference between the interaction and distortion energies is responsible for the stereoselectivity. In the catalyzed reaction, bisthiourea induces both the diene and dienophile to approach it via weak intermolecular interactions, which greatly lowers the energy barrier of the reaction and leads to the product with excellent stereoselectivity. The possible pathways of this reaction were explored, which suggested that the formation of the two C-C bonds goes through either a stepwise or concerted asynchronous mechanism. These results detail the reaction mechanism and shed light on both the significant role of the bisthiourea catalyst and the origin of stereoselectivity for this type of Diels-Alder reaction and related ones.
3-乙烯基吲哚与亚甲基茚满酮的 Diels-Alder 反应既可以在无催化剂条件下进行,也可以使用双硫脲作为催化剂。使用双硫脲的反应速度更快,产物的立体选择性更高。基于量子力学计算和反应性指数、NCI、QTAIM 和变形/相互作用模型的理论方法,详细阐述了反应机理、立体选择性的起源和催化剂的作用。在无催化剂反应中,形成的两个 C-C 键通过协同异步机制从非共价键转化为共价键。过渡态中形成的弱分子间相互作用起着重要作用。相互作用能和变形能之间的差异决定了立体选择性。在催化反应中,双硫脲通过弱分子间相互作用诱导双烯和亲二烯体接近它,这大大降低了反应的能垒,导致产物具有优异的立体选择性。探索了该反应的可能途径,表明两个 C-C 键的形成既可以通过分步反应,也可以通过协同异步机制进行。这些结果详细描述了反应机理,阐明了双硫脲催化剂的重要作用以及此类 Diels-Alder 反应及相关反应的立体选择性的起源。