Departament de Química Física i Inorgànica, Universitat Rovira i Virgili, C/Marcel líDomingo, s/n. 43007 Tarragona, Spain.
Chemistry. 2010 Jan 11;16(2):620-38. doi: 10.1002/chem.200901842.
A new class of modular P,N-ligand library has been synthesized and screened in the Pd-catalyzed allylic substitution reactions of several substrate types. These series of ligands can be prepared efficiently from easily accessible hydroxyl-oxazole/thiazole derivatives. Their modular nature enables the bridge length, the substituents at the heterocyclic ring and in the alkyl backbone chain, the configuration of the ligand backbone, and the substituents/configurations in the biaryl phosphite moiety to be easily and systematically varied. By carefully selecting the ligand components, therefore, high regio- and enantioselectivities (ee values up to 96 %) and good activities are achieved in a broad range of mono-, di-, and trisubstituted linear hindered and unhindered substrates and cyclic substrates. The NMR spectroscopic and DFT studies on the Pd-pi-allyl intermediates provide a deeper understanding of the effect of ligand parameters on the origin of enantioselectivity.
已合成并筛选了一类新型的模块化 P,N-配体库,用于 Pd 催化的几种底物类型的烯丙基取代反应。这些配体系列可以从易于获得的羟基-噁唑/噻唑衍生物高效制备。它们的模块化性质使桥接长度、杂环环和烷基主链链上的取代基、配体骨架的构型以及联苯基亚磷酸酯部分的取代基/构型能够轻松且系统地改变。因此,通过仔细选择配体成分,在广泛的单、二和三取代的线性受阻和非受阻底物以及环状底物中实现了高区域和对映选择性(ee 值高达 96%)和良好的活性。对 Pd-π-烯丙基中间体的 NMR 光谱和 DFT 研究提供了对配体参数对映选择性起源影响的更深入理解。