Češarek Urška, Liu Lijun, Chen Qiyi, Wen Tianyuan, Žagar Ema, Zhao Junpeng, Pahovnik David
Department of Polymer Chemistry and Technology, National Institute of Chemistry, Hajdrihova 19, 1000 Ljubljana, Slovenia.
Faculty of Chemistry and Chemical Technology, University of Ljubljana, Večna Pot 113, 1000 Ljubljana, Slovenia.
J Am Chem Soc. 2025 Feb 12;147(6):5189-5196. doi: 10.1021/jacs.4c15676. Epub 2025 Jan 22.
Polyethers are versatile materials extensively used in advanced as well as everyday applications. The incorporation of primary amine functionality into polyethers is particularly attractive due to its well-established coupling chemistries. However, the inherent nucleophilicity of amine group poses a challenge in the anionic ring-opening polymerization (ROP) of epoxides and requires the use of robust protecting groups that can withstand the harsh conditions of ROP without triggering undesirable side reactions. In this work, we present streamlined synthesis of amino-functionalized polyethers using classic -carbamate-protected aminoalcohols as initiators for the ROP of epoxides. A Lewis acid-excess two-component organocatalytic system is found to trigger efficient anionic ROP of epoxides while preserving the integrity of the carbamate protection. Despite the higher intrinsic acidity of the carbamate group compared to the hydroxyl group, it is noncompetitive in both the deprotonation and ring-opening steps. This is due to an intriguing acidity-reversing effect of the catalyst, which allows site-specific ethoxylation to proceed exclusively from the hydroxyl group. The resulting poly(propylene oxide) and poly(ethylene oxide) exhibit the targeted molar mass, low dispersity, and well-defined end groups. The fidelity of the amino functionalities is further corroborated and utilized in construction of polypeptoide-based hybrid block copolymers using the synthesized polyethers as macroinitiators.
聚醚是用途广泛的材料,广泛应用于先进以及日常应用中。由于其成熟的偶联化学性质,将伯胺官能团引入聚醚中特别具有吸引力。然而,胺基固有的亲核性在环氧化物的阴离子开环聚合(ROP)中构成了挑战,需要使用能够承受ROP苛刻条件而不引发不良副反应的强大保护基团。在这项工作中,我们展示了使用经典的氨基甲酸酯保护的氨基醇作为环氧化物ROP的引发剂,简化合成氨基官能化聚醚的方法。发现一种路易斯酸过量的双组分有机催化体系能够引发环氧化物的高效阴离子ROP,同时保持氨基甲酸酯保护的完整性。尽管氨基甲酸酯基团的固有酸度高于羟基,但它在去质子化和开环步骤中均无竞争性。这是由于催化剂具有有趣的酸度反转效应,使得位点特异性乙氧基化仅从羟基开始进行。所得的聚环氧丙烷和聚环氧乙烷具有目标摩尔质量、低分散度和明确的端基。使用合成的聚醚作为大分子引发剂,进一步证实了氨基官能团的保真度并将其用于构建基于聚肽的杂化嵌段共聚物。