State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 211816, China.
Dalton Trans. 2022 Oct 11;51(39):14906-14911. doi: 10.1039/d2dt02418g.
Chiral inorganic nanostructures are essential for many enantioselective processes. It is possible to bestow chirality on otherwise achiral inorganic materials, covalent functionalization of their surfaces with chiral organic molecules. However, controlling the degree of covalent functionalization is challenging, and there is an urgent need to find new avenues that can be applied to attach chiral moieties on different types of surfaces. By taking advantage of the versatility of diazonium chemistry, here we present a combined SPM/Raman study of the covalent grafting of amino acid-derived molecules on two different solid surfaces, with the intention to evaluate the effect of chiral reductants, chirally functionalized surfaces and chiral solvents on the chiral functionalization of solid surfaces. We show that the all three chiral species have an effect on the grafting of amino acid derivatives on solid surfaces, but affect the covalent attachment in different fashions. With a survey of the different aspects at play in chiral functionalization of solid surfaces, this study may offer a potential solution for the controlled production of many chiral nanostructures, and might also shine some light on the understanding of enantiospecific processes on inorganic crystalline surfaces.
手性无机纳米结构对于许多对映选择性过程至关重要。可以通过在其表面上用手性有机分子进行共价功能化,从而赋予原本无手性的无机材料手性。然而,控制共价功能化的程度具有挑战性,因此迫切需要寻找新的途径,可以将手性部分附着在不同类型的表面上。通过利用重氮化学的多功能性,在这里我们提出了一种结合 SPM/Raman 的研究方法,用于研究氨基酸衍生分子在两种不同固体表面上的共价接枝,目的是评估手性还原剂、手性功能化表面和手性溶剂对固体表面手性功能化的影响。我们表明,所有三种手性物质都对氨基酸衍生物在固体表面上的接枝有影响,但以不同的方式影响共价键合。通过对固体表面手性功能化中起作用的不同方面进行调查,这项研究可能为许多手性纳米结构的可控生产提供一种潜在的解决方案,也可能为理解手性晶体表面上的对映特异性过程提供一些启示。