Institute of Chemistry, Saint Petersburg State University, Universitetskaya Nab. 7/9, Saint Petersburg, 199034, Russian Federation.
Org Biomol Chem. 2021 Sep 15;19(35):7611-7620. doi: 10.1039/d1ob01158h.
This report demonstrates the successful application of electrostatic surface potential distribution analysis for evaluating the relative catalytic activity of a series of azolium-based halogen bond donors. A strong correlation ( > 0.97) was observed between the positive electrostatic potential of the σ-hole on the halogen atom and the Gibbs free energy of activation of the model reactions (, halogen abstraction and carbonyl activation). The predictive ability of the applied approach was confirmed experimentally. It was also determined that the catalytic activity of azolium-based halogen bond donors was generally governed by the structure of the azolium cycle, whereas the substituents on the heterocycle had a limited impact on the activity. Ultimately, this study highlighted four of the most promising azolium halogen bond donors, which are expected to exhibit high catalytic activity.
本报告展示了静电表面电势分布分析在评估一系列唑鎓基卤键供体相对催化活性中的成功应用。在模型反应(卤原子的σ-hole 的正静电势与吉布斯自由能活化能)中观察到强相关性(>0.97)。所应用方法的预测能力得到了实验验证。还确定唑鎓基卤键供体的催化活性通常受唑鎓环的结构控制,而杂环上的取代基对活性的影响有限。最终,本研究强调了四种最有前途的唑鎓卤键供体,预计它们将表现出高催化活性。