首页> 美国卫生研究院文献>Polymers >αω-Epoxide Oxetane and Dithiocarbonate Telechelic Copolyolefins: Access by Ring-Opening Metathesis/Cross-Metathesis Polymerization (ROMP/CM) of Cycloolefins in the Presence of Functional Symmetric Chain-Transfer Agents
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αω-Epoxide Oxetane and Dithiocarbonate Telechelic Copolyolefins: Access by Ring-Opening Metathesis/Cross-Metathesis Polymerization (ROMP/CM) of Cycloolefins in the Presence of Functional Symmetric Chain-Transfer Agents

机译:αω-环氧氧杂环丁烷和二硫代碳酸酯远螯共聚烯烃:在功能对称链转移剂存在下通过环烯烃的开环复分解/交叉复分解聚合(ROMP / CM)访问

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摘要

Epoxide- and oxetane-α,ω-telechelic (co)polyolefins have been successfully synthesized by the tandem ring-opening metathesis polymerization (ROMP)/cross-metathesis (CM) of cyclic olefins using Grubbs’ second-generation catalyst (>G2) in the presence of a bifunctional symmetric alkene epoxide- or oxetane-functionalized chain-transfer agent (CTA). From cyclooctene (COE), trans,trans,cis-1,5,9-cyclododecatriene (CDT), norbornene (NB), and methyl 5-norbornene-2-carboxylate (NBCOOMe), with bis(oxiran-2-ylmethyl) maleate (CTA >1), bis(oxetane-2-ylmethyl) maleate (CTA >2), or bis(oxetane-2-ylmethyl) (E)-hex-3-enedioate (CTA >3), well-defined α,ω-di(epoxide or oxetane) telechelic PCOEs, P(COE-co-NB or -NBCOOMe)s, and P(NB-co-CDT)s were isolated under mild operating conditions (40 or 60 °C, 24 h). The oxetane CTA >3 and the epoxide CTA >1 were revealed to be significantly more efficient in the CM step than CTA >2, which apparently inhibits the reaction. Quantitative dithiocarbonatation (CS2/LiBr, 40 °C, THF) of an α,ω-di(epoxide) telechelic P(NB-co-CDT) afforded a convenient approach to the analogous α,ω-bis(dithiocarbonate) telechelic P(NB-co-CDT). The nature of the end-capping function of the epoxide/oxetane/dithiocarbonate telechelic P(NB-co-CDT)s did not impact their thermal signature, as measured by DSC. These copolymers also displayed a low viscosity liquid-like behavior and a shear thinning rheological behavior.
机译:使用Grubbs的第二代催化剂,通过环烯烃的串联开环复分解聚合(ROMP)/交叉复分解(CM)成功合成了环氧-和氧杂环丁烷-α,ω-telechelic(共)聚烯烃。 G2 )在双功能对称烯烃环氧化物或氧杂环丁烷官能化链转移剂(CTA)的存在下。来自环辛烯(COE),反式,反式,顺式1,5,9-环十二碳三烯(CDT),降冰片烯(NB)和5-降冰片烯-2-羧酸甲酯(NB COOMe ),马来酸双(环氧乙烷-2-基甲基)(CTA > 1 ),马来酸双(氧杂环丁烷-2-基甲基)(CTA > 2 )或双(氧杂环丁烷-2-基甲基) )(E)-3--3-烯二酸酯(CTA > 3 ),定义明确的α,ω-二(环氧化物或氧杂环丁烷)远螯PCOE,P(COE-co-NB或-NB COOMe s和P(NB-co-CDT)s在温和的操作条件下(40或60°C,24 h)分离。氧杂环丁烷CTA > 3 和环氧化物CTA > 1 在CM步骤中的效率显着高于CTA > 2 ,这显然抑制了反应。 α,ω-二(环氧)远螯P(NB-co-CDT)的定量二硫代碳酸化(CS2 / LiBr,40°C,THF)为类似的α,ω-二(二硫代碳酸酯)远螯P( NB-co-CDT)。通过DSC测量,环氧化物/氧杂环丁烷/二硫代碳酸酯远螯P(NB-co-CDT)的封端功能的性质不影响其热签名。这些共聚物还表现出低粘度的液体状行为和剪切稀化流变行为。

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