Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599, United States.
J Am Chem Soc. 2022 May 18;144(19):8487-8492. doi: 10.1021/jacs.2c02738. Epub 2022 May 5.
Helical polymers with a defined main-chain atropoisomeric conformation are important materials in high value applications such as nonlinear optics and chiral separations. Currently, no methods exist for the cationic helix-sense-selective polymerization of prochiral vinyl monomers, which limits access to a number of potentially valuable optically active helical polymers. Here, we demonstrate the first stereoselective cationic helix-sense-selective polymerization of a prochiral vinyl monomer, which provides access to optically active helices of poly(-vinylcarbazole). Chiral bis(oxazoline)-scandium Lewis acids serve as chiral counterions to polymerize -vinylcarbazole into highly isotactic (up to 94% triads) polymers. Mechanistic investigations uncovered the distinct phenomenon that are responsible for independent control of conformational (i.e., helicity) and configurational (i.e., tacticity) stereochemistry. Polymer helicity was strongly influenced by the stereoselectivity of the first monomer propagation, whereas polymer tacticity was dictated by the thermodynamically controlled conformation of the growing polymer chain end. Overall, this method expands the suite of accessible helical polymers through helix-sense-selective polymerization and provides mechanistic insight into how polymer tacticity and helicity can be controlled independently.
具有确定主链对映异构构象的螺旋聚合物是在非线性光学和手性分离等高价值应用中重要的材料。目前,尚无对前手性乙烯基单体进行阳离子手性选择性聚合的方法,这限制了许多潜在有价值的光学活性螺旋聚合物的获得。在这里,我们展示了首例前手性乙烯基单体的立体选择性阳离子手性选择性聚合,该方法可获得聚(-乙烯基咔唑)的光学活性螺旋。手性双(恶唑啉)-钪路易斯酸作为手性抗衡离子,将 - 乙烯基咔唑聚合为高全同立构(高达 94%三联体)聚合物。机理研究揭示了负责独立控制构象(即螺旋性)和构型(即立构规整性)立体化学的独特现象。聚合物的螺旋性受第一个单体聚合的立体选择性强烈影响,而聚合物的立构规整性则由增长聚合物链末端的热力学控制构象决定。总体而言,该方法通过手性选择性聚合扩展了可获得的螺旋聚合物的范围,并深入了解如何独立控制聚合物的立构规整性和螺旋性。