Henke Helena, Brüggemann Oliver, Teasdale Ian
Institute of Polymer Chemistry, Johannes Kepler University Linz, Altenberger Straße 69, 4040, Linz, Austria.
Macromol Rapid Commun. 2017 Feb;38(4). doi: 10.1002/marc.201600644. Epub 2017 Jan 3.
This feature article briefly highlights some of the recent advances in polymers in which phosphorus is an integral part of the backbone, with a focus on the preparation of functional, highly branched, soluble polymers. A comparison is made between the related families of materials polyphosphazenes, phosphazene/phosphorus-based dendrimers and polyphosphoesters. The work described herein shows this to be a rich and burgeoning field, rapidly catching up with organic chemistry in terms of the macromolecular synthetic control and variety of available macromolecular architectures, whilst offering unique property combinations not available with carbon backbones, such as tunable degradation rates, high multi-valency and facile post-polymerization functionalization. As an example of their use in advanced applications, we highlight some investigations into their use as water-soluble drug carriers, whereby in particular the degradability in combination with multivalent nature has made them useful materials, as underlined by some of the recent studies in this area.
这篇专题文章简要介绍了一些近期在聚合物领域取得的进展,这些聚合物的主链中含有磷元素,重点是功能性、高度支化、可溶聚合物的制备。文章对聚磷腈、磷腈/磷基树枝状大分子和聚磷酸酯等相关材料家族进行了比较。本文所述的研究表明,这是一个丰富且蓬勃发展的领域,在大分子合成控制和可用大分子结构的多样性方面正迅速赶上有机化学,同时还提供了碳主链聚合物所没有的独特性能组合,如可调节的降解速率、高多价性和易于进行的后聚合功能化。作为它们在先进应用中的一个例子,我们重点介绍了一些关于它们作为水溶性药物载体的研究,特别是它们的可降解性与多价性质相结合,使其成为有用的材料,这一点在该领域最近的一些研究中得到了强调。