Department of Chemical Engineering, Virginia Polytechnic Institute and State University, 635 Prices Fork Road, Blacksburg, VA, 24061, USA.
Nat Commun. 2023 Jun 20;14(1):3647. doi: 10.1038/s41467-023-39405-5.
Stereoselective ring-opening polymerization catalysts are used to produce degradable stereoregular poly(lactic acids) with thermal and mechanical properties that are superior to those of atactic polymers. However, the process of discovering highly stereoselective catalysts is still largely empirical. We aim to develop an integrated computational and experimental framework for efficient, predictive catalyst selection and optimization. As a proof of principle, we have developed a Bayesian optimization workflow on a subset of literature results for stereoselective lactide ring-opening polymerization, and using the algorithm, we identify multiple new Al complexes that catalyze either isoselective or heteroselective polymerization. In addition, feature attribution analysis uncovers mechanistically meaningful ligand descriptors, such as percent buried volume (%V) and the highest occupied molecular orbital energy (E), that can access quantitative and predictive models for catalyst development.
手性选择性开环聚合催化剂用于生产可降解的立体规整聚(乳酸),其热性能和机械性能优于无规聚合物。然而,发现高立体选择性催化剂的过程在很大程度上仍然是经验性的。我们旨在开发一个集成的计算和实验框架,以实现高效、可预测的催化剂选择和优化。作为一个原理验证,我们已经在立体选择性丙交酯开环聚合的文献结果的子集上开发了一个贝叶斯优化工作流程,并使用该算法确定了多个新的 Al 配合物,它们可以催化等规聚合或杂规聚合。此外,特征归因分析揭示了具有机械意义的配体描述符,如埋置体积百分比(%V)和最高占据分子轨道能量(E),这些描述符可以建立定量和预测性的催化剂开发模型。