1-Vinylcyclohexene (VCH) 与萜烯衍生单体 S-4-Isopropenyl-1-vinyl-1-cyclohexene (IVC) 的异选择性聚合及其与线性萜烯的二元共聚。

IF 4.2 3区 化学 Q2 POLYMER SCIENCE
Ilaria Grimaldi, Assunta D'Amato, Mariarosaria C Gambardella, Antonio Buonerba, Raffaele Marzocchi, Finizia Auriemma, Carmine Capacchione
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引用次数: 0

摘要

线性 1,3-二烯立体定向聚合技术的发展,使得生产具有精确立体控制的聚合物成为可能,从而对其物理和化学特性产生了重大影响。虽然 1,3-丁二烯和异戊二烯可生产出多种立体定向聚合物,但由于催化剂难题和在橡胶工业中的应用有限,环状二烯受到的关注较少。然而,人们对生物基单体的兴趣日益浓厚,尤其是那些从萜烯和萜类化合物中提取的单体,这重新激发了人们对具有共轭双键的环状单体的兴趣。本研究使用 [OSSO] 型钛配合物 1-2 研究了 1-乙烯基环己烯 (VCH) 的聚合反应,发现了显著的区域和立体选择性。含有积基取代基的催化剂 2 表现出卓越的性能,可生成以 3,4 嵌合为主的高度同素异形的聚(VCH)。研究还表明,S-4-异丙烯基-1-乙烯基-1-环己烯(IVC)(一种生物基单体)的聚合可产生一种高度同向性的聚合物。最后,还报告了 IVC 与两种线性萜烯的共聚结果,以获得完全来自可再生资源的共聚物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isoselective Polymerization of 1-Vinylcyclohexene (VCH) and a Terpene Derived Monomer S-4-Isopropenyl-1-vinyl-1-cyclohexene (IVC), and Its Binary Copolymerization with Linear Terpenes.

The advancement of stereoregular polymerization techniques for linear 1,3-dienes has enabled the production of polymers with precise stereocontrol, influencing their physical and chemical properties significantly. While 1,3-butadiene and isoprene yield diverse stereoregular polymers, cyclic dienes have received less attention due to catalyst challenges and limited application in the rubber industry. However, the growing interest in bio-based monomers, particularly those derived from terpenes and terpenoids, has revitalized interest in cyclic monomers with conjugated double bonds. This study investigates 1-vinylcyclohexene (VCH) polymerization using [OSSO]-type titanium complexes 1-2, revealing significant regio- and stereoselectivity. Catalyst 2, incorporating cumyl substituents, demonstrates superior performance, yielding highly isotactic poly(VCH) with 3,4-insertion predominance. It is also shown that the polymerization of S-4-isopropenyl-1-vinyl-1-cyclohexene (IVC), a bio-based monomer, results in a highly isotactic polymer. Finally, the copolymerization results of IVC with two linear terpenes to obtain copolymers derived entirely from renewable sources are also reported.

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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
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