Moya Juan Francisco, Rosales Christian, Fernández Inmaculada, Khiar Noureddine
Instituto de Investigaciones Químicas (IIQ), CSIC and Universidad de Sevilla, C/Américo Vespucio 49, 41092, Seville, Spain.
Departamento de Química Orgánica y Farmacéutica, Universidad de Sevilla, C/García González 12, 41012 Seville, Spain.
Org Biomol Chem. 2017 Jul 21;15(27):5772-5780. doi: 10.1039/c7ob01085k. Epub 2017 Jun 29.
The post-functionalization of a chiral catalyst offers the advantage of providing it with additional physical characteristics that, together with its enantioselective capacity, increase its overall synthetic value. Taking advantage of the modularity and polyfunctionality of carbohydrate-derived ligands, herein we report the synthesis of two mixed P/S catalysts functionalized with a pyrene group through the 6 position of the sugar by carbon chains of different lengths. Using the hydrogenation of methyl (Z)-α-acetamidocinnamate as the model reaction has shown that the proximity of the pyrenyl group to the catalytic center is detrimental to the activity and enantioselectivity of the hydrogenation process, the most efficient catalyst being the complex derived from pyrenebutyric acid 12. The study of the supramolecular π-π interaction of the most active complex 12 with SWCNTs by UV-Vis spectroscopy shows, that in ethyl acetate complex 12 is totally adsorbed onto the SWCNT surface, while in methylene chloride there is an equilibrium between the adsorbed and the free form of the complex, allowing the use of complex 12 and SWCNTs in a catch and release process. Interestingly, it has been determined that the nanocatalyst 12/SWCNT is more enantioselective than complex 12 alone, affording (S)-N-acetylphenyl alanine 16 in quantitative yield and 96% ee.
手性催化剂的后功能化具有为其赋予额外物理特性的优势,这些特性与其对映选择性能力一起,提高了其整体合成价值。利用碳水化合物衍生配体的模块化和多功能性,我们在此报告了两种通过不同长度的碳链在糖的6位用芘基团功能化的混合P/S催化剂的合成。以(Z)-α-乙酰氨基肉桂酸甲酯的氢化反应作为模型反应表明,芘基与催化中心的接近度对氢化过程的活性和对映选择性不利,最有效的催化剂是源自芘丁酸12的配合物。通过紫外-可见光谱对最具活性的配合物12与单壁碳纳米管的超分子π-π相互作用的研究表明,在乙酸乙酯中配合物12完全吸附在单壁碳纳米管表面,而在二氯甲烷中配合物的吸附形式和游离形式之间存在平衡,这使得配合物12和单壁碳纳米管可用于捕获和释放过程。有趣的是,已确定纳米催化剂12/单壁碳纳米管比单独的配合物12具有更高的对映选择性,以定量产率和96%的对映体过量得到(S)-N-乙酰基苯丙氨酸16。