Zheng Xiaolai, Jones Christopher W, Weck Marcus
School of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.
Chemistry. 2005 Dec 23;12(2):576-83. doi: 10.1002/chem.200500786.
Here we describe an unprecedented synthetic approach to poly(styrene)-supported chiral salen ligands by the free radical polymerization of an unsymmetrical styryl-substituted salen monomer (H2salen = bis(salicylidene)ethylenediamine). The new method allows for the attachment of salen moieties to the polymer main chain in a flexible, pendant fashion, avoiding grafting reactions that often introduce ill-defined species on the polymers. Moreover, the loading of the salen is controlled by the copolymerization of the styryl-substituted salen monomer with styrene in different ratios. The polymeric salen ligands are metallated with cobalt(II) acetate to afford the corresponding supported Co-salen complexes, which are used in the hydrolytic kinetic resolution of racemic epichlorohydrin, exhibiting high reactivity and enantioselectivity. Remarkably, the copolymer-supported Co-salen complexes showed a better catalytic performance (>99 % ee, 54 % conversion, one hour) in comparison to the homopolymeric analogues and the small molecule Co-salen complex. The soluble poly(styrene)-supported catalysts were recovered by precipitation after the catalytic reactions and were recycled three times to afford almost identical enantiomeric excesses as the first run, with slightly reduced reaction rates.
在此,我们描述了一种前所未有的合成方法,通过不对称苯乙烯基取代的双水杨醛缩乙二胺单体(H2salen)的自由基聚合反应来制备聚苯乙烯负载的手性双水杨醛缩乙二胺配体。这种新方法能够以灵活的侧链形式将双水杨醛缩乙二胺部分连接到聚合物主链上,避免了通常会在聚合物上引入不明确物种的接枝反应。此外,双水杨醛缩乙二胺的负载量可通过苯乙烯基取代的双水杨醛缩乙二胺单体与苯乙烯以不同比例进行共聚来控制。将聚合物双水杨醛缩乙二胺配体用乙酸钴(II)进行金属化反应,得到相应的负载型钴-双水杨醛缩乙二胺配合物,该配合物用于外消旋环氧氯丙烷的水解动力学拆分,表现出高反应活性和对映选择性。值得注意的是,与均聚物类似物和小分子钴-双水杨醛缩乙二胺配合物相比,共聚物负载的钴-双水杨醛缩乙二胺配合物在催化性能上表现更优(>99% ee,54%转化率,反应一小时)。催化反应后,通过沉淀回收可溶性聚苯乙烯负载的催化剂,并循环使用三次,得到的对映体过量与第一次运行时几乎相同,只是反应速率略有降低。