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Linear low-density polyethylene containing precisely placed hexyl branches

机译:线性低密度聚乙烯,含有精确定位的己基支链

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摘要

A structural investigation into model linear low-density polyethylene containing precise hexyl branches has been completed using metathesis chemistry. These models based on ethylene/1-octene (EO) copolymers are versions of industrially produced metallocene copolymers; however, they contain exact primary structures and constant methylene sequence lengths. Acyclic diene metathesis (ADMET) polymerization has been used to produce copolymers containing only hexyl branches on every 9th, 15th, or 21st carbon along the backbone of polyethylene. Thermal examination of these macromolecules has demonstrated the first narrow melting profile for EO copolymers with high 1-octene incorporation (111, 67, and 48 hexyl branches per 1000 carbons). Further, a new synthetic methodology has been developed to produce branched, pure diene functional monomers with the ability to produce any model LLDPE in good yields.
机译:使用复分解化学已经完成了对含有精确己基分支的线性低密度聚乙烯模型的结构研究。这些基于乙烯/ 1-辛烯(EO)共聚物的模型是工业生产的茂金属共聚物的版本。但是,它们包含精确的一级结构和恒定的亚甲基序列长度。无环二烯复分解(ADMET)聚合已用于生产沿聚乙烯骨架仅在第9、15或21个碳原子上仅包含己基支链的共聚物。这些大分子的热检查表明,具有高1-辛烯掺入(每1000个碳原子有111、67和48个己基支链)的EO共聚物首次具有较窄的熔融曲线。此外,已经开发出一种新的合成方法来生产支链的,纯的二烯官能单体,该单体能够以高收率生产任何模型的LLDPE。

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