Ovitt Tina M, Coates Geoffrey W
Baker Laboratory, Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853-1301, USA.
J Am Chem Soc. 2002 Feb 20;124(7):1316-26. doi: 10.1021/ja012052+.
The synthesis of chiral aluminum and yttrium alkoxides and their application for lactide polymerization are reported. The complexes (SalBinap)MOR [4, M = Al, R = (i)Pr; 5, M = Y, R = (CH(2))(2)NMe(2)] are synthesized by reacting the ligand (SalBinap)H(2) [2,2'-[(1,1'-binaphthalene)-2,2'-diylbis(nitrilomethylidyne)]bisphenol] with the appropriate metal trisalkoxide. While enantiomerically pure yttrium complex 5 did not effect stereocontrol in the polymerization of either meso- or rac-lactide, homochiral 4 was found to exhibit excellent stereocontrol in a range of lactide polymerizations. Enantiomerically pure 4 polymerizes meso-lactide to syndiotactic poly(lactic acid) (PLA), while rac-4 polymerizes meso- and rac-lactide to heterotactic and isotactic stereoblock PLA, respectively. On the basis of the absolute stereochemistry of ring-opening of meso-lactide using (R)-4, a polymer exchange mechanism is proposed to account for the PLA microstructures resulting from rac-4.
报道了手性铝和钇醇盐的合成及其在丙交酯聚合中的应用。配合物(SalBinap)MOR [4,M = Al,R = (i)Pr;5,M = Y,R = (CH(2))(2)NMe(2)]通过配体(SalBinap)H(2) [2,2'-[(1,1'-联萘)-2,2'-二亚基双(亚甲基腈)]双酚]与适当的金属三醇盐反应合成。虽然对映体纯的钇配合物5在meso-丙交酯或rac-丙交酯的聚合中没有实现立体控制,但发现手性纯的4在一系列丙交酯聚合中表现出优异的立体控制。对映体纯的4将meso-丙交酯聚合成间同立构聚乳酸(PLA),而rac-4分别将meso-丙交酯和rac-丙交酯聚合成杂同立构和全同立构的立体嵌段PLA。基于使用(R)-4对meso-丙交酯开环的绝对立体化学,提出了一种聚合物交换机制来解释由rac-4产生的PLA微观结构。