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Copolymerization of Norbornene and Norbornadiene Using a cis-Selective Bimetallic W-Based Catalytic System

机译:降冰片烯和降冰片二烯的共聚合使用顺-选择性双金属W基催化体系。

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摘要

The bimetallic cluster Na[W2(μ-Cl)3Cl4(THF)2]·(THF)3 ({W2}, {W 3 W}6+, a′2e′4), which features a triple metal-metal bond, is a highly efficient room-temperature initiator for ring opening metathesis polymerization (ROMP) of norbornene (NBE) and norbornadiene (NBD), providing high-cis polymers. In this work, {W2} was used for the copolymerization of the aforementioned monomers, yielding statistical poly(norbornene)/poly(norbornadiene) PNBE/PNBD copolymers of high molecular weight and high-cis content. The composition of the polymer chain was estimated by 13C CPMAS NMR data and it was found that the ratio of PNBE/PNBD segments in the polymer chain was relative to the monomer molar ratio in the reaction mixture. The thermal properties of all copolymers were similar, resembled the properties of PNBD homopolymer and indicated a high degree of cross-linking. The morphology of all materials in this study was smooth and non-porous; copolymers with higher PNBE content featured a corrugated morphology. Glass transition temperatures were lower for the copolymers than for the homopolymers, providing a strong indication that those materials featured a branched-shaped structure. This conclusion was further supported by viscosity measurements of copolymers solutions in THF. The molecular structure of those materials can be controlled, potentially leading to well-defined star polymers via the “core-first” synthesis method. Therefore, {W2} is not only a cost-efficient, practical, highly active, and cis-stereoselective ROMP-initiator, but it can also be used for the synthesis of more complex macromolecular structures.
机译:双金属簇Na [W2(μ-Cl)3Cl4(THF)2]·(THF)3({W2},{W 3 W} 6 + ,a具有三重金属-金属键的' 2 e' 4 )是降冰片烯(NBE)开环易位聚合(ROMP)的高效室温引发剂)和降冰片二烯(NBD),提供高顺式聚合物。在这项工作中,{W2}用于上述单体的共聚,得到高分子量和高顺式含量的统计聚(降冰片烯)/聚(降冰片二烯)PNBE / PNBD共聚物。用13 C CPMAS NMR数据估算聚合物链的组成,发现聚合物链中PNBE / PNBD链段的比例与反应混合物中单体的摩尔比有关。所有共聚物的热性质相似,类似于PNBD均聚物的性质,并显示出高度的交联度。本研究中所有材料的形态都是光滑无孔的。 PNBE含量较高的共聚物呈波纹状。共聚物的玻璃化转变温度比均聚物低,这有力地表明这些材料具有分支状结构。 THF中共聚物溶液的粘度测量进一步支持了这一结论。可以控制这些材料的分子结构,并可能通过“核芯优先”合成方法生成定义明确的星形聚合物。因此,{W2}不仅是成本有效,实用,高活性和顺式立体选择性的ROMP引发剂,而且还可以用于合成更复杂的大分子结构。

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