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手性铝沙仑催化剂对 rac-丙交酯的立体选择性聚合和对 meso-丙交酯的非对映选择性聚合的双重立体控制机理。

The Dual-Stereocontrol Mechanism: Heteroselective Polymerization of rac-Lactide and Syndioselective Polymerization of meso-Lactide by Chiral Aluminum Salan Catalysts.

机构信息

School of Chemistry, Tel Aviv University, Ramat Aviv, Tel Aviv, 6997801, Israel.

Department of Chemistry and Biology A. Zambelli, and, INSTM Research Unit, University of Salerno, Fisciano, 84084 Salerno, Italy.

出版信息

Angew Chem Int Ed Engl. 2019 Oct 7;58(41):14679-14685. doi: 10.1002/anie.201906848. Epub 2019 Aug 21.

Abstract

We describe alkoxo-aluminum catalysts of chiral bipyrrolidine-based salan ligands that follow the dual-stereocontrol mechanism wherein a given combination of stereogeneities at the metal site and the proximal center of the last inserted lactidyl ("match") is active towards lactide having a proximal stereogenic center of the opposite configuration, while the diastereomeric combination of stereogeneities ("mismatch") is inactive towards any lactide. Polymerization of rac-LA by the enantiomerically pure catalysts was sluggish and gave stereoirregular poly(lactic acid) (PLA) because selective insertion to a match diastereomer gives a mismatch diastereomer. The racemic catalysts showed higher activity and led to highly heterotactic PLA following polymeryl exchange between two mismatched catalyst enantiomers. A succession of match diastereomers in selective meso-LA insertions led to syndiotactic PLAs reaching a syndiotacticity degree of α=0.96. This polymer featured a T of 153 °C matching the highest reported value, and the highest crystallinity (ΔH =56 J g ) ever reported for syndiotactic PLA.

摘要

我们描述了手性双吡咯烷基沙兰配体的烷氧基铝催化剂,遵循双重立体控制机制,其中金属位点和最后插入的内消旋乳酸基近端中心的立体中心的特定组合(“匹配”)对具有相反构型的近端立体中心的内消旋乳酸(Lactide)具有活性,而立体中心的非对映异构体组合(“不匹配”)对任何内消旋乳酸均无活性。对映体纯催化剂聚合 rac-LA 反应缓慢,得到立体不规则的聚乳酸(PLA),因为选择性插入到匹配的非对映异构体中会得到不匹配的非对映异构体。外消旋催化剂表现出更高的活性,并在两种不匹配的催化剂对映体之间进行聚甲基交换后导致高度全同立构的 PLA。在选择性的 meso-LA 插入中,一系列匹配的非对映异构体导致间同立构 PLA 达到α=0.96 的间同立构度。这种聚合物的 Tg 为 153°C,与报道的最高值相匹配,结晶度(ΔH=56 J g)是报道的间同立构 PLA 中最高的。

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