首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A closer look at epsilon-caprolactone polymerization catalyzed by alkyl aluminum complexes: the effect of induction period on overall catalytic activity
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A closer look at epsilon-caprolactone polymerization catalyzed by alkyl aluminum complexes: the effect of induction period on overall catalytic activity

机译:仔细研究烷基铝配合物催化的ε-己内酯聚合:诱导时间对整体催化活性的影响

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摘要

Previous studies on the ring-opening polymerization of epsilon-caprolactone using structurally related aluminum complexes as pre-catalysts showed inconsistent trends in the total conversion time. We propose that an induction period for Al complexes for conversion to real catalytic species, Al alkoxide, should be considered because the total conversion time consists of both an induction period and polymer propagation time. Herein, the polymerization rate of a series of Al complexes bearing ketimine ligands was investigated. The catalytic results indicated complexes with more steric hindrance with an electron-with-drawing group on the ligands, or the fact that less chelating ligands demonstrated greater propagation activity. The opposite trend for these structural effects was observed on the measurement of induction periods. These features on ligands of aluminum complexes are responsible for facilitating the conversion process to Al alkoxides. The overall catalytic performance should consider both the induction period and the propagation time.
机译:先前对使用结构相关的铝络合物作为预催化剂的ε-己内酯的开环聚合的研究表明,总转化时间的趋势不一致。我们建议应考虑将Al络合物转化为实际催化物质Al醇盐的诱导期,因为总转化时间包括诱导期和聚合物扩散时间。在此,研究了一系列带有ketimine配体的Al配合物的聚合速率。催化结果表明与配体上具有吸电子基团的位阻更大的配合物,或螯合配体较少的事实表明其具有较高的传播活性。在诱导期的测量中观察到这些结构效应的相反趋势。铝配合物配体上的这些特征有助于促进向烷氧基铝的转化过程。总体催化性能应同时考虑诱导期和传播​​时间。

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