Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, 637371, Singapore, Singapore.
Chemistry. 2019 Oct 8;25(56):13025-13029. doi: 10.1002/chem.201903188. Epub 2019 Sep 11.
An effective method to synthesize azido-end polymethacrylates from tetrabutylammonium azide (BNN ) in a nonpolar solvent (toluene) was developed. Several low-mass alkyl halides were reacted with BNN in toluene as model reactions and the rate constants of these reactions were determined, to confirm fast BNN azidation for tertiary and secondary halides. The end-group transformation of halide-end polymethacrylates was effective and nearly quantitative. Notably, the combination of organocatalyzed living (or reversible deactivation) radical polymerization and BNN azidation enabled the metal-free synthesis of azido-end polymethacrylates, including single-azido-end and multi-azido-end functional homopolymers and block copolymers. The rapid and quantitative reaction without the requirement for a large excess of BNN , metal-free and polar-solvent-free nature, and broad polymer scope are attractive features of this azidation.
发展了一种在非极性溶剂(甲苯)中由四丁基叠氮化铵(BNN)合成叠氮封端聚甲基丙烯酸酯的有效方法。在甲苯中,几种低分子量的卤代烷与 BNN 进行反应作为模型反应,并确定了这些反应的速率常数,以证实叔卤代物和仲卤代物的 BNN 叠氮化反应的快速性。卤代封端聚甲基丙烯酸酯的端基转化是有效的,几乎是定量的。值得注意的是,有机催化的活(或可逆失活)自由基聚合和 BNN 叠氮化的结合能够实现无金属的叠氮封端聚甲基丙烯酸酯的合成,包括单叠氮封端和多叠氮封端的功能均聚物和嵌段共聚物。该叠氮化反应具有快速、定量、无需大量过量 BNN、无金属、无有机溶剂以及广泛的聚合物范围等优点。