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首页> 外文期刊>Polymer chemistry >Internal Lewis pair enhanced H-bond donor: boronate-urea and tertiary amine co-catalysis in ring-opening polymerization
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Internal Lewis pair enhanced H-bond donor: boronate-urea and tertiary amine co-catalysis in ring-opening polymerization

机译:内部刘易斯对增强H-bond捐助:boronate-urea和叔胺co-catalysis开环聚合

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Co-catalysis with an H-bond donor (HBD) and base has been an important bifunctional catalytic system for polymerizations. The development of strong HBDs is a continuing quest in the design of more efficient H-bonding catalysts. Internal Lewis pair enhanced H-bond donors (LPHBDs) as strong HBDs have not been explored for polymerizations. Here we report that boronate-urea (BU) as a representative LPHBD, combined with (-)-sparteine as the base, promoted fast ring-opening polymerization (ROP) of L-lactide (LLA) at room temperature, which featured high conversions (up to 99%), predicted molecular weights (from 2.58 to 17.2 kg mol(-1)), and narrow dispersities (D <= 1.16). A bifunctional synergistic activation mechanism was proposed and supported by NMR titrations. The controlled/living nature of the ROP for LLA was confirmed by kinetics and chain extension experiments. H-1 NMR, SEC, and MALDI-ToF MS analyses strongly indicated that the obtained PLAs were the designated ones. The successful synthesis of well-defined poly(trimethylene carbonate)-block-poly(L-lactide) verified that the catalytic ROP was of a controlled/living nature, and suggested that the LPHBD binary catalysis system is generally applicable. Taken together, we present a new protocol of internal Lewis pair enhanced H-bond (LPHBD) catalysis in ROP. Boronate-urea (BU) as a representative LPHBD is mild, tunable and it is more efficient than the common urea; it is nicely compatible with tertiary amines. BU combined with tertiary amines is a generally workable polymerization tool.
机译:Co-catalysis H-bond捐赠(HBD)和基地一直是一个重要的双功能催化对聚合反应系统。强HBDs持续追求的设计更有效的H-bonding催化剂。刘易斯对增强H-bond捐助者(LPHBDs)强HBDs尚未探索的聚合反应。LPHBD boronate-urea (BU)作为代表,结合(-)金雀花碱为基础,提升快开环聚合(ROP)L-lactide (LLA)在室温下高转化率(99%),预测分子量(从2.58到17.2公斤摩尔(1)),和狭窄的分散性(D < = 1.16)。双官能协同激活机制提出并由NMR滴定。控制/生活LLA的罗普的性质证实了动力学和链延长实验。分析强烈表明,获得的塑料是指定的。定义良好的聚(环丙烷的合成碳酸盐岩)-block-poly (L-lactide)证实的催化罗普是控制/生活自然,建议LPHBD二进制催化系统是普遍适用的。在一起,提出了一种新的协议的内部刘易斯对增强H-bond (LPHBD)催化罗普。是温和的,可调,这是更有效的比普通尿素;叔胺。是一个普遍可行的聚合工具。

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