State Key Laboratory of Chemical Resource Engineering, College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.
Macromol Rapid Commun. 2013 Sep;34(18):1426-45. doi: 10.1002/marc.201300498. Epub 2013 Aug 28.
Particles constructed by chiral polymers (defined as PCPs) have emerged as a rapidly expanding research field in recent years because of their potentially wide-ranging applications in asymmetric catalysis, enantioselective crystallization, enantioselective release, amongst many others. The particles show considerable optical activity, due to the chirality of the corresponding polymers from which the particles are derived. This review article presents an overview on PCPs with emphasis on our group's recent achievements in the preparation of PCPs derived from optically active helical polymers and their applications. PCPs can be prepared via emulsion polymerization, precipitation polymerization, and suspension polymerization by starting from monomers. Emulsification of preformed chiral polymers and self-assembly approaches also can lead to PCPs. Chiral polymer-based core/shell particles, hollow particles, and magnetic particles are also covered because of their remarkable properties and significant potential applications.
近年来,手性聚合物(定义为 PCPs)构建的颗粒因其在不对称催化、对映选择性结晶、对映选择性释放等方面的潜在广泛应用而成为一个快速发展的研究领域。这些颗粒表现出相当大的光学活性,这是由于它们所衍生的相应聚合物具有手性。本文综述了 PCPs,重点介绍了我们小组在制备手性螺旋聚合物衍生的 PCPs 及其应用方面的最新成果。PCPs 可以通过单体的乳液聚合、沉淀聚合和悬浮聚合来制备。预形成的手性聚合物的乳化和自组装方法也可以导致 PCPs 的形成。基于手性聚合物的核/壳颗粒、空心颗粒和磁性颗粒也因其显著的性质和重要的潜在应用而被涵盖。