Parkin John D, Chisholm Ross, Frost Aileen B, Bailey Richard G, Smith Andrew D, Hähner Georg
EaStCHEMSchool of Chemistry, University of St. Andrews, North Haugh, St. Andrews, KY16 9ST, UK.
Angew Chem Int Ed Engl. 2018 Jul 20;57(30):9377-9381. doi: 10.1002/anie.201804814. Epub 2018 Jun 29.
Traditional methods to prepare chiral surfaces involve either the adsorption of a chiral molecule onto an achiral surface, or adsorption of a species that forms a chiral template creating lattices with long range order. To date only limited alternative strategies to prepare chiral surfaces have been studied. In this manuscript a "bottom-up" approach is developed that allows the preparation of chiral surfaces by direct enantioselective organocatalytic reactions on a functionalized silicon oxide supported self-assembled monolayer (SAM). The efficient catalytic generation of enantiomerically enriched organic surfaces is achieved using a commercially available homogeneous isothiourea catalyst that promotes an enantioselective Michael-lactonization process upon a silicon-oxide supported SAM functionalized with a reactive trifluoroenone group. Chiral atomic force microscopy (χ-AFM) is used to probe the enantiomeric enrichment of the organic films by measurement of the force distributions arising from interaction of d- or l-cysteine-modified AFM tips and the organic films.
制备手性表面的传统方法包括将手性分子吸附到非手性表面上,或者吸附一种形成手性模板的物质,从而创建具有长程有序的晶格。迄今为止,仅研究了有限的制备手性表面的替代策略。在本论文中,开发了一种“自下而上”的方法,该方法允许通过在功能化的氧化硅负载自组装单分子层(SAM)上进行直接对映选择性有机催化反应来制备手性表面。使用市售的均相异硫脲催化剂实现了对映体富集有机表面的高效催化生成,该催化剂在用反应性三氟烯酮基团功能化的氧化硅负载SAM上促进对映选择性迈克尔内酯化过程。手性原子力显微镜(χ-AFM)用于通过测量由d-或l-半胱氨酸修饰的AFM探针与有机膜相互作用产生的力分布来探测有机膜的对映体富集情况。