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Neutral and cationic tetracoordinated aluminum complexes featuring tridentate nitrogen donors: Synthesis, structure, and catalytic activity for the ring-opening polymerization of propylene oxide and (D,L) lactide

机译:具有三齿氮供体的中性和阳离子四配位铝络合物:环氧丙烷和(D,L)丙交酯开环聚合的合成,结构和催化活性

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摘要

The dilithium salts of N,N',N"-tris (trimethylsilyl) diethylenetriamine (1), N-methyl-N',N"-bis(trimethylsilyl)diethylenetriamine (2), and N-methyl-N',N"-bis(diisopropyl)diethylenetriamine amine (3) reacted in THF, at -40 degrees C, with AlCl3 affording monomeric aluminum chloride derivatives 4 (55% yield), 5 (76% yield), and 6 (71% yield), respectively. Addition of 1 equiv of AlMe3 to the amine 2 gave rise to the five-coordinate dimethylaluminum derivative 9 (67% yield); heating a toluene solution of 9 overnight at 80 degrees C induces a loss of methane giving rise to the four-coordinate methylaluminum compound 10 (50% yield). The amine 2 also reacted at low temperature with LiAlH4 affording derivative 11 (38% yield). Compounds 4-6 reacted subsequently in toluene with 1 equiv of HCl and 1 equiv of AlCl3 to afford the first chiral tetracoordinated aluminum cations 12 (94% yield), 13 (93% yield), and 14 (90% yield), respectively. Single-crystal X-ray diffraction studies of derivatives 4, 5, 8, 10, 11, 12, and 15 have been carried out. They revealed that the tridentate nitrogen donors enforce an approximately trigonal-monopyramidal coordination geometry for neutral and cationic four-coordinate aluminum complexes. All cationic aluminum derivatives 12-14 and the neutral aluminum chloride 4 brought about the oligomerization of propylene oxide (PO). Low molecular weight polymers having narrow molecular weight distributions were obtained. The C-13 NMR spectra of these polymers indicate that they consist exclusively of head-to-tail linkages and that these macromolecules are rich in meso diad and isotactic triad sequences. Due to the presence of a free axial site, a new mechanism for PO polymerization is proposed. Methyl- and hydridoaluminum derivatives 10 and 11, as well as aluminum alkoxide, prepared in situ by reacting derivative 13 with PO, initiated the polymerization of (D,L)-lactide in benzene at 80 degrees C. High molecular weight polymers of broad molecular weight distributions were obtained in good yields. [References: 82]
机译:N,N',N”-三(三甲基甲硅烷基)二亚乙基三胺(1),N-甲基-N',N”-双(三甲基甲硅烷基)二亚乙基三胺(2)和N-甲基-N',N”的二锂盐-双(二异丙基)二亚乙基三胺胺(3)在-40°C的THF中与AlCl3反应,分别得到单体氯化铝衍生物4(55%的收率),5(76%的收率)和6(71%的收率)在胺2中加入1当量的AlMe3得到五配位的二甲基铝衍生物9(产率67%);在80℃下加热9的甲苯溶液过夜导致甲烷的损失,从而得到四配位的化合物。甲基铝化合物10(收率50%)。胺2在低温下也与LiAlH4反应,得到衍生物11(收率38%)。化合物4-6随后在甲苯中与1当量HCl和1当量AlCl3反应,得到第一手性四配位铝阳离子12(94%收率),13(93%收率)和14(90%收率)衍生物的单晶X射线衍射研究4 ,5、8、10、11、12和15已执行。他们发现,三齿氮供体对中性和阳离子四配位铝配合物具有近似三角-单锥体配位的几何形状。所有阳离子铝衍生物12-14和中性氯化铝4引起环氧丙烷(PO)的低聚。获得具有窄分子量分布的低分子量聚合物。这些聚合物的C-13 NMR光谱表明,它们仅由头对尾键组成,并且这些大分子富含内消旋二单元和全同三单元序列。由于存在自由轴向位点,提出了一种用于PO聚合的新机理。通过使衍生物13与PO反应原位制备的甲基铝和氢化铝衍生物10和11以及烷氧基铝,在80摄氏度下引发(D,L)-丙交酯在苯中的聚合。宽分子高分子量聚合物获得了良好的重量分布。 [参考:82]

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