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Multiblock Copolymers of Norbornene and Cyclododecene: Chain Structure and Properties

机译:降冰片烯和环二烯的多嵌段共聚物:链结构和性能

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摘要

We investigate the structure–property relations of the multiblock copolymers of norbornene with cyclododecene synthesized via the macromolecular cross-metathesis reaction between amorphous polynorbornene and semicrystalline polydodecenamer in the presence of the first-generation Grubbs catalyst. By adjusting the reaction time, catalyst amount, and composition of the initial system, we obtain a set of statistical multiblock copolymers that differ in the composition and average length of norbornene and dodecenylene unit sequences. Structural, thermal, and mechanical characterization of the copolymers with NMR, XRD, DSC (including thermal fractionation by successive self-nucleation and annealing), and rotational rheology allows us to relate the reaction conditions to the average length of crystallizable unit sequences, thicknesses of corresponding lamellas, and temperatures of their melting. We demonstrate that isolated dodecenylene units can be incorporated into crystalline lamellas so that even nearly random copolymers should retain crystallinity. Weak high-temperature endotherms observed in the multiblock copolymers of norbornene with cyclododecene and other cycloolefins could indicate that the corresponding systems are microphase-separated in the melt state.
机译:我们研究了通过在第一代GRUBBS催化剂的存在非晶多晶硅烯和半结晶多癸烯体之间的大分子交叉复分解反应合成的降冰片烯的多嵌段共聚物的结构性质关系。通过调节初始系统的反应时间,催化剂量和组成,我们获得一组统计多嵌段共聚物,其在降冰片烯和十二核基单元序列的组成和平均长度上不同。与NMR,XRD,DSC(包括连续自成核和退火的热分馏)的结构,热和机械表征,旋转流变允许我们将反应条件与可结晶单元序列,厚度的厚度相关联相应的薄片,以及它们熔化的温度。我们证明孤立十二烯基单位可以掺入结晶薄片中,使得即使接近随机的共聚物也应保持结晶度。在具有环二烯和其他环烯烃的降冰片烯的多嵌段共聚物中观察到的弱高温吸收可能表明相应的系统在熔体状态下是微相分离的。

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