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Lanthanide chloride complexes of amine-bis(phenolate) ligands and their reactivity in the ring-opening polymerization of ε-caprolactone

机译:胺 - 双(酚盐)配体的镧系氯化物配合物及其在ε-己内酯开环聚合反应中的反应性

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摘要

Reaction of two equivalents of n-BuLi with sterically demanding amine-bis(phenol) compounds, H2O2NN′R (Me2NCH2CH2N{CH2-3,5-R2-C6H2OH}2; R = t-Bu or t-Pe (tert-pentyl)) yields isolable lithium complexes, Li2(O2NN′R), in good yields. Upon reaction with one equivalent of LnCl3(THF)x, the lithium salts afford rare earth amine-phenolate chloride complexes in good yields, Ln(O2NN′R)Cl(THF); Ln = Y, Yb, Ho, Gd, Sm, Pr. Crystals of Y(O2NN′t-Bu)Cl(THF), 1, and Sm(O2NN′t-Bu)Cl(DME), 2, suitable for single crystal X-ray crystallographic analysis were obtained. In contrast to previously reported [{Gd(O2NN′t-Pe)(THF)(μ-Cl)}2] and related La and Sm complexes, these species are monomeric. 1 contains Y in a distorted octahedral environment bonded to two amine, two phenolate, one THF and one chloride donor. 2 contains Sm in a distorted capped trigonal prismatic environment bonded to two amine, two phenolate, two DME oxygens and one chloride donor. The Ln(O2NN′t-Pe)Cl(THF) complexes were active initators for the controlled ring-opening polymerization of ε-caprolactone with a tendency to form low molecular weight cyclic polyesters (Mn 3000–5000). The conversion rates, although slower than related amido and alkyl species, were different for monomeric and dimeric initiators. The size of the metal centre also affected the conversions and the molecular weights achieved.
机译:两当量的n-BuLi与空间上需要的胺-双(苯酚)化合物H2O2NN'R(Me2NCH2CH2N {CH2-3,5-R2-C6H2OH} 2; R = t-Bu或t-Pe(叔戊基))以良好的产率产生可分离的锂络合物Li2(O2NN'R)。与一当量的LnCl3(THF)x反应后,锂盐可提供高产率的稀土胺-酚盐氯化物配合物,即Ln(O2NN'R)Cl(THF); Ln = Y,Yb,Ho,Gd,Sm,Pr。获得了适合于单晶X射线晶体学分析的Y(O2NN't-Bu)Cl(THF)1和Sm(O2NN't-Bu)Cl(DME)2晶体。与先前报道的[{Gd(O2NN't-Pe)(THF)(μ-Cl)} 2]和相关的La和Sm络合物相反,这些物质是单体。 1在扭曲的八面体环境中包含Y,Y与两个胺,两个酚盐,一个THF和一个氯供体键合。 2在扭曲的带帽三角棱镜环境中包含Sm,与两个胺,两个酚盐,两个DME氧和一个氯化物供体结合。 Ln(O2NN't-Pe)Cl(THF)络合物是可控制的ε-己内酯开环聚合反应的活性引发剂,倾向于形成低分子量的环状聚酯(Mn 3000-5000)。转化率虽然比相关的酰胺基和烷基慢,但对于单体和二聚引发剂却有所不同。金属中心的大小也影响转化率和获得的分子量。

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