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首页> 外文期刊>Angewandte Chemie >One-Step Ring Opening Metathesis Block-Like Copolymers and their Compositional Analysis by a Novel Retardation Technique
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One-Step Ring Opening Metathesis Block-Like Copolymers and their Compositional Analysis by a Novel Retardation Technique

机译:单步环开口复分解块状共聚物及其通过新型延迟技术分析

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Using a one-step synthetic route for block copolymers avoids the repeated addition of monomers to the polymerization mixture, which can easily lead to contamination and, therefore, to the unwanted termination of chain growth. For this purpose, monomers (M1-M5) with different steric hindrances and different propagation rates are explored. Copolymerization of M1 (propagating rapidly) with M2 (propagating slowly), M1 with M3 (propagating extremely slowly) and M4 (propagating rapidly) with M5 (propagating slowly) yielded diblock-like copolymers using Grubbs' first (G1) or third generation catalyst (G3). The monomer consumption was followed by H-1 NMR spectroscopy, which revealed vastly different reactivity ratios for M1 and M2. In the case of M1 and M3, we observed the highest difference in reactivity ratios (r(1)=324 and r(2)=0.003) ever reported for a copolymerization method. A triblock-like copolymer was also synthesized using G3 by first allowing the consumption of the mixture of M1 and M2 and then adding M1 again. In addition, in order to measure the fast reaction rates of the G3 catalyst with M1, we report a novel retardation technique based on an unusual reversible G3 Fischer-carbene to G3 benzylidene/alkylidene transformation.
机译:使用单级合成途径用于嵌段共聚物,避免了对聚合混合物的重复加入单体,这可以容易地导致污染,因此,不需要的链生长终止。为此目的,探索具有不同空间障碍和不同传播速率的单体(M1-M5)。用M2(快速传播)的M1(迅速传播),M1与M3(传播极慢地传播)和M5(快速传播)和M5(快速传播)与M5(缓慢传播)进行共聚,得到使用Grubbs的第一(G1)或第三代催化剂的二嵌段样共聚物(g3)。单体消耗之后是H-1 NMR光谱,其揭示了M1和M2的不同反应性比。在M1和M3的情况下,我们观察到迄今为止举报的反应性比率的最高差异(R(1)= 324和R(2)= 0.003)以进行共聚方法。通过首先允许使用M1和M2的混合物然后再加入M1,也可以使用G3合成三嵌段样的共聚物。另外,为了测量G3催化剂的快速反应速率与M1,我们报告了一种基于不寻常的可逆G3 Fischer-Carbene至G3苄基/亚烷基转化的新型延迟技术。

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