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手性路易斯酸在单壁碳纳米管上的非共价固定化作为合成有机水化学的工具。

Noncovalent immobilization of chiral Lewis acids on single-walled carbon nanotubes as a tool for synthetic organic aquachemistry.

作者信息

Kitanosono Taku, Tanaka Satoshi, Zhang Dongxin, Hisada Tomoya, Yamashita Yasuhiro, Kobayashi Shu

机构信息

Department of Chemistry, School of Science, The University of Tokyo Bunkyo-ku Tokyo 113-0033 Japan

出版信息

Chem Sci. 2025 Sep 1. doi: 10.1039/d5sc05390k.

Abstract

Polycyclic aromatic hydrocarbons (PAHs) were employed as anchoring tags to noncovalently immobilize Lewis acids onto single-walled carbon nanotubes (SWNTs). This heterogeneous system demonstrated remarkable performance in asymmetric catalysis, particularly in water devoid of organic solvents or surfactants, outperforming other carbonaceous π-materials in activity, stereoselectivity, and reusability. The use of large-diameter SWNTs modified with 4-fluorophenyl groups further enhanced catalytic activity. Notably, Sc(PyS)-SWNT combined with a chiral modifier retained high performance without the covalent anchorage, even after multiple reuse cycles. No leaching of scandium or the chiral modifier was observed, consistent with TGA results, despite washing with solvents in which the chiral modifier is highly soluble. XPS analysis demonstrated that among the supports examined, SWNTs exhibited the most significant electron donation to the Sc and S centers, underscoring the exceptional electronic interaction responsible for the stable immobilization. Despite its high surface area and adsorption capacity, activated carbon showed poor performance and significant leaching, suggesting that electron donation from SWNTs stabilizes flexible, solution-like conformations of the Lewis acid complex, mitigating the unavoidable attenuation of Lewis acidity more effectively than other supports. This strategy also mitigates deactivation risks posed by nucleophiles such as amines, thiols, and free N-H indoles, which typically displace chiral ligands. Thus, a robust, non-covalent immobilization platform has been established, capable of delivering high activity, selectivity, and durability even in water, which is traditionally challenging for Lewis acid catalysis. This approach offers a promising pathway toward more sustainable and environmentally conscious asymmetric synthesis.

摘要

多环芳烃(PAHs)被用作锚定标签,将路易斯酸非共价固定在单壁碳纳米管(SWNTs)上。这种多相体系在不对称催化中表现出卓越的性能,特别是在不含有机溶剂或表面活性剂的水中,在活性、立体选择性和可重复使用性方面优于其他碳质π材料。使用经4-氟苯基修饰的大直径SWNTs进一步提高了催化活性。值得注意的是,Sc(PyS)-SWNT与手性修饰剂结合,即使经过多次重复使用循环,在没有共价锚定的情况下仍保持高性能。尽管用手性修饰剂高度可溶的溶剂洗涤,未观察到钪或手性修饰剂的浸出,这与热重分析结果一致。X射线光电子能谱(XPS)分析表明,在所研究的载体中,SWNTs对Sc和S中心表现出最显著的电子给予作用,突出了这种特殊的电子相互作用对稳定固定的作用。尽管活性炭具有高表面积和吸附能力,但其性能较差且浸出明显,这表明SWNTs的电子给予作用稳定了路易斯酸络合物的类似溶液的柔性构象,比其他载体更有效地减轻了路易斯酸度不可避免的衰减。该策略还降低了亲核试剂(如胺、硫醇和游离N-H吲哚)带来的失活风险,这些亲核试剂通常会取代手性配体。因此,已经建立了一个强大的非共价固定平台,即使在水中也能提供高活性、选择性和耐久性,而水对路易斯酸催化传统上具有挑战性。这种方法为更可持续和环保的不对称合成提供了一条有前景的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6451/12435506/be542db166db/d5sc05390k-f1.jpg

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