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首页> 外文期刊>Macromolecules >N-Heterocyclic Carbene-Organocatalyzed Ring-Opening Polymerization of Ethylene Oxide in the Presence of Alcohols or Trimethylsilyl Nucleophiles as Chain Moderators for the Synthesis of alpha,omega-Heterodifunctionalized Poly(ethylene oxide)s
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N-Heterocyclic Carbene-Organocatalyzed Ring-Opening Polymerization of Ethylene Oxide in the Presence of Alcohols or Trimethylsilyl Nucleophiles as Chain Moderators for the Synthesis of alpha,omega-Heterodifunctionalized Poly(ethylene oxide)s

机译:醇或三甲基甲硅烷基亲核试剂作为链减速剂的N-杂环碳烯-有机催化的环氧乙烷的开环聚合反应,用于合成α,ω-异双官能化聚环氧乙烷

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The present study describes innovations in the ring-opening polymerization (ROP) of ethylene oxide (EO) using N-heterocyclic carbenes (NHCs) as organocatalysts, which enables the synthesis of alpha,omega-heterodifunctionalized poly(ethylene oxide)s (PEOs). Two representative NHC catalysts, namely, 1,3-bis(diisopropyl)imidazol-2-ylidene (1) and 1,3-bis(di-tert-butyl)imidazol-2-ylidene (2), were efficiently employed in conjunction with a variety of chain regulators of general structure NuE, where Nu and E are the nucleophilic and the electrophilic part, respectively, with E = H or SiMe3 (e.g., PhCH2OH, HC CCH2OH, N3SiMe3, and PhCH2OSiMe3). Catalytic amounts of the NHC (typically [NHC]/[NuE]/[EO] = 0.1/1/100 in moles) were indeed utilized to trigger the metal-free ROP of EO at 50 C in dimethyl sulfoxide, allowing the polymerization to proceed to completion. In this way, PEOs of dispersities lower than 1.2 and molar masses perfectly matching the [EO]/[NuE] ratio were obtained, attesting to the controlled/living character of these NHC-catalyzed polymerizations. Characterization of alpha,omega-difunetionalized PEOs by combined techniques such as H-1 NMR spectroscopy, MALDI-TOF mass spectrometry, and size exclusion chromatography confirmed the quantitative introduction of the nucleophilic moiety (Nu) and its electrophilic component (E = H Or SiMe3) in the alpha- and omega-position of the PEO chains, respectively, and the formation of polymers with narrowly distributed molar masses. These results are discussed in the light of the existence of two possible mechanisms. The first one involves a direct attack of the NHC catalyst onto EO and the formation of a zwitterionic intermediate (activated monomer mechanism). The second possibility is the activation by the NHC of the E moiety of the NuE chain regulator first and then of the alpha-Nu,omega-OE PEO chain (activated chain end mechanism).
机译:本研究描述了使用N杂环卡宾(NHC)作为有机催化剂的环氧乙烷(EO)的开环聚合(ROP)的创新技术,该技术能够合成α,ω-杂二功能化聚环氧乙烷(PEO) 。有效结合使用了两种代表性的NHC催化剂,即1,3-双(二异丙基)咪唑-2-亚烷基(1)和1,3-双(二叔丁基)咪唑-2-亚烷基(2)具有各种具有一般结构NuE的链调节剂,其中Nu和E分别是亲核部分和亲电子部分,其中E = H或SiMe3(例如PhCH2OH,HC CCH2OH,N3SiMe3和PhCH2OSiMe3)。确实使用了催化量的NHC(通常以摩尔计[NHC] / [NuE] / [EO] = 0.1 / 1/100)来引发EO在50℃的二甲基亚砜中的无金属ROP,从而使聚合反应进行到完成。以此方式,获得分散度低于1.2且摩尔质量与[EO] / [NuE]比完全匹配的PEO,证明了这些NHC催化的聚合的受控/活性特征。通过H-1 NMR光谱,MALDI-TOF质谱和尺寸排阻色谱等组合技术对α,ω-双官能化PEO进行表征,证实了亲核部分(Nu)及其亲电组分的定量引入(E = H或SiMe3 )分别位于PEO链的α位和ω位,并形成摩尔质量分布狭窄的聚合物。鉴于两种可能的机制的存在,对这些结果进行了讨论。第一个涉及NHC催化剂对EO的直接攻击和两性离子中间体的形成(活化的单体机理)。第二种可能性是NHC先激活NuE链调节剂的E部分,然后再激活α-Nu,omega-OE PEO链(激活的链端机制)。

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