Center for Polymer Chemistry, Department of Chemistry, University of Houston, Houston, Texas 77204-5003, United States.
J Am Chem Soc. 2020 Sep 9;142(36):15431-15437. doi: 10.1021/jacs.0c06644. Epub 2020 Aug 27.
Palladium diimine-catalyzed polymerization of olefins using unsaturated alcohols as chain-transfer agents has been demonstrated. The reaction affords aldehyde end-capped polymers whose molecular weight can be tuned by varying the ratio of olefin/chain-transfer agent. Notably, >95% efficient end capping with aldehyde can be achieved under optimized conditions. This end-capping procedure is a rare example of introducing a highly reactive and versatile terminal functionality in polyolefin chains using a functional group-tolerant late metal catalyst. The reactivity of these end-capped polymers is illustrated here via functionalization with dyes to yield colored, hydrocarbon-soluble polyolefin derivatives.
钯二亚胺催化的烯烃聚合反应,使用不饱和醇作为链转移剂,已经得到了证明。该反应得到醛封端聚合物,其分子量可以通过改变烯烃/链转移剂的比例来调节。值得注意的是,在优化条件下,可以实现超过 95%的醛高效封端。这种封端方法是使用官能团容忍的后过渡金属催化剂在聚烯烃链中引入高反应性和多功能末端官能团的罕见实例。通过与染料进行功能化,得到有色、可溶于烃类的聚烯烃衍生物,展示了这些封端聚合物的反应性。