Chu Jia-Hong, Xu Xun-Hui, Kang Shu-Ming, Liu Na, Wu Zong-Quan
Department of Polymer Science and Engineering, School of Chemistry and Chemical Engineering, and Anhui Key Laboratory of Advanced Catalytic Materials and Reaction Engineering , Hefei University of Technology , 193 Tunxi Road , Hefei 230009 , Anhui Province , People's Republic of China.
J Am Chem Soc. 2018 Dec 19;140(50):17773-17781. doi: 10.1021/jacs.8b11628. Epub 2018 Dec 11.
In this work, air-stable palladium(II) catalysts bearing bidentate phosphine ligands were designed and prepared, which could initiate fast and living polymerizations of various diazoacetate monomers under mild conditions. The polymerization afforded the desired polymers in high yields with controlled molecular weights ( Ms) and narrow molecular weight distributions ( M/ Ms). The Ms of the isolated polymers were linearly correlated to the initial feed ratios of monomer to catalyst, confirming the living/controlled manner of the polymerizations. The M also increased linearly with the monomer conversion, and all of the isolated polymers showed narrow M/ Ms. The polymerization was relatively fast and could be accomplished within several minutes. Such fast living polymerization method can be applied to a wide range of diazoacetate monomers in various organic solvents at room temperature in air. Taking advantage of the living nature, we facilely prepared a series of block copolymers through chain extension reactions. The amphiphilic block copolymers synthesized by this method exhibited interesting self-assembly properties. Moreover, polymerization of achiral bulky diazoacetate by Pd(II) catalysts bearing a chiral bidentate phosphine ligand leads to the formation of polymers with high optical activity due to the formation of the predominantly one-handed helix of the main chain. The helix sense of the polymers was determined by the chirality of the Pd(II) catalysts.
在本工作中,设计并制备了带有双齿膦配体的空气稳定型钯(II)催化剂,该催化剂能够在温和条件下引发各种重氮乙酸酯单体的快速活性聚合反应。聚合反应以高产率得到了具有可控分子量((M_n))和窄分子量分布((M_w/M_n))的所需聚合物。分离得到的聚合物的(M_n)与单体和催化剂的初始进料比呈线性相关,证实了聚合反应的活性/可控方式。(M_w)也随着单体转化率的增加而线性增加,并且所有分离得到的聚合物都显示出窄的(M_w/M_n)。聚合反应相对较快,能够在几分钟内完成。这种快速活性聚合方法可以在室温下于空气中在各种有机溶剂中应用于多种重氮乙酸酯单体。利用其活性特性,我们通过链增长反应轻松制备了一系列嵌段共聚物。通过这种方法合成的两亲性嵌段共聚物表现出有趣的自组装性质。此外,带有手性双齿膦配体的钯(II)催化剂催化非手性大体积重氮乙酸酯的聚合反应,由于主链形成了主要为单手螺旋结构,导致形成具有高光学活性的聚合物。聚合物的螺旋方向由钯(II)催化剂的手性决定。