Shanghai Key Laboratory of Advanced Polymeric Materials, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai 200237, China.
Macromol Rapid Commun. 2011 Nov 1;32(21):1688-98. doi: 10.1002/marc.201100378. Epub 2011 Aug 23.
Bergman cyclization of enediynes, regarded as a promising strategy for anticancer drugs, now finds its own niche in the area of polymer chemistry and material science. The highly reactive aromatic diradicals generated from Bergman cyclization can undergo polymerization acting as either monomers or initiators of other vinyl monomers. The former, namely homopolymerization, leads to polyphenylenes and polynaphthalenes with excellent thermal stability, good solubility, and processability. The many remarkable properties of these aromatic polymers have further endowed them to be manufactured into carbon-rich materials, e.g., glassy carbons and carbon nanotubes. Whereas used as initiators, enediynes provide a novel resource for high molecular weight polymers with narrow polydispersities. The aromatic diradicals are also useful for introducing oligomers or polymers onto pristine carbonous nanomaterials, such as carbon nano-onions and carbon nanotubes, to improve their dispersibility in organic solvents and polymer solutions.
苯并环丁烯(Bergman)环化的烯二炔类化合物,被认为是一种很有前途的抗癌药物,如今在聚合物化学和材料科学领域找到了自己的位置。从 Bergman 环化中产生的高反应性的芳族双自由基可以作为单体或其他乙烯基单体的引发剂进行聚合。前者,即均聚,生成具有出色热稳定性、良好溶解性和可加工性的聚苯和聚萘。这些芳族聚合物的许多显著性能进一步使它们被制成富碳材料,例如玻璃状碳和碳纳米管。而作为引发剂,烯二炔类化合物为具有较窄多分散性的高分子量聚合物提供了一种新的资源。芳族双自由基也可用于将低聚物或聚合物引入原始的碳质纳米材料,例如碳纳米洋葱和碳纳米管,以改善它们在有机溶剂和聚合物溶液中的分散性。