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Organocatalytic controlled/living ring-opening polymerization of cyclotrisiloxanes initiated by water with strong organic base catalysts

机译:水与强有机碱催化剂引发的有机三环催化/活性环三硅氧烷的开环聚合

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摘要

Organocatalytic controlled/living ring-opening polymerization of cyclotrisiloxanes, such as hexamethylcyclotrisiloxane, 1,3,5-trimethyl-1,3,5-triphenylcyclotrisiloxane, 1,3,5-trimethyl-1,3,5-trivinylcyclotrisiloxane, and 1,3,5-trimethyl-1,3,5-tris(3,3,3-trifluoropropyl)cyclotrisiloxane, using water as an initiator and strong organic bases, such as amidines, guanidines, phosphazene bases, and proazaphosphatrane, as catalysts produced a variety of polysiloxanes with controlled number-average molecular weights (Mn = 2.64–102.3 kg mol–1), narrow polydispersity (Đ = 1.03–1.16), and well-defined symmetric structures. Controlled syntheses of statistical copolymers and triblock copolymers were achieved by copolymerizations of two cyclotrisiloxanes. Various terminal functionalities were successfully introduced by the end-capping reaction of propagating polysiloxanes using functional chlorosilanes. Kinetic investigations demonstrated that the polymerization proceeded through the initiator/chain-end activation mechanism, namely activations of water in the initiation reaction and of terminal silanols in propagating polysiloxanes in the propagation reaction. Catalytic activities of strong organic bases were revealed to depend on their Brønsted basicity and efficiency of the proton transfer in the initiation and propagation reactions. Guanidines possessing an R–NC(N)–NH–R′ unit, in particular 1,3-trimethylene-2-propylguanidine, showed excellent performance as a catalyst. In this system, even non-dehydrated solvents are usable for the polymerization.
机译:环三硅氧烷如六甲基环三硅氧烷,1,3,5-三甲基-1,3,5-三苯基环三硅氧烷,1,3,5-三甲基-1,3,5-三乙烯基环三硅氧烷和1的有机催化控制/活性开环聚合3,5-三甲基-1,3,5-三(3,3,3-三氟丙基)环三硅氧烷,使用水作为引发剂,并使用强有机碱(例如am,胍,磷腈碱和原氮杂磷杂环丁烷)作为催化剂,可制得数均分子量受控(Mn = 2.64–102.3 kg mol –1 ),窄的多分散性(Đ= 1.03-1.16)和定义明确的对称结构的各种聚硅氧烷。统计共聚物和三嵌段共聚物的受控合成通过两种环三硅氧烷的共聚来实现。通过使用官能氯硅烷的扩链聚硅氧烷的封端反应,成功引入了各种末端官能团。动力学研究表明,聚合反应是通过引发剂/链端活化机理进行的,即引发反应中水的活化和扩散反应中繁殖的聚硅氧烷中末端硅醇的活化。结果表明,强有机碱的催化活性取决于其布朗斯台德碱度和质子在引发和扩散反应中的转移效率。具有R–N <!-私有字符pc1-> C(N)–NH–R'单元的胍,特别是1,3-三亚甲基-2-丙基胍,表现出优异的催化剂性能。在该系统中,甚至非脱水溶剂也可用于聚合。

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