Dove Andrew P, Pratt Russell C, Lohmeijer Bas G G, Waymouth Robert M, Hedrick James L
IBM Almaden Research Center, 650 Harry Road, San Jose, California 95120, USA.
J Am Chem Soc. 2005 Oct 12;127(40):13798-9. doi: 10.1021/ja0543346.
A versatile, metal-free, organocatalytic approach to the living ring-opening polymerization of lactide using a bifunctional thiourea-tertiary amine catalyst is described. Mild and highly selective polymerization conditions produced poly(lactides) with predictable molecular weights and extremely narrow polydispersities ( approximately 1.05), characteristic of a living polymerization. The extraordinary selectivity of this catalyst system for polymerization relative to transesterification is remarkably unusual. The low polydispersities and exceptional control observed are a consequence of selective transesterification of lactide relative to the open chain esters. Presumably, the ring strain of lactide provides both a driving force for the polymerization and a kinetic preference for polymerization relative to transesterification with catalyst. We postulate that the initiating/propagating alcohol is activated by acid-base interaction with the tertiary amine moiety and the carbonyl of the lactide monomer is simultaneously activated by hydrogen bonding to the thiourea moiety of the catalyst.
本文描述了一种通用的、无金属的有机催化方法,该方法使用双功能硫脲 - 叔胺催化剂实现丙交酯的活性开环聚合。温和且高度选择性的聚合条件生成了具有可预测分子量和极窄多分散性(约1.05)的聚丙交酯,这是活性聚合的特征。相对于酯交换反应,该催化剂体系对聚合反应具有非凡的选择性,这非常罕见。观察到的低多分散性和出色的控制是由于丙交酯相对于开链酯的选择性酯交换反应。据推测,丙交酯的环应变既为聚合反应提供了驱动力,又在与催化剂的酯交换反应中为聚合反应提供了动力学偏好。我们推测引发/增长的醇通过与叔胺部分的酸碱相互作用而被活化,同时丙交酯单体的羰基通过与催化剂的硫脲部分形成氢键而被活化。