手性表面活性剂提高水中不对称催化硫氧化反应的立体选择性

IF 5.2 2区 化学 Q1 CHEMISTRY, APPLIED Catalysis Today Pub Date : 2024-07-08 DOI:10.1016/j.cattod.2024.114924
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引用次数: 0

摘要

手性表面活性剂可以在水中提供不对称环境,从而提高手性金属催化剂的立体选择性。由于胶束的高动态特性,这一特定研究领域很少有人涉足。表面活性剂的设计及其与催化剂的相互作用对于提高立体选择性至关重要。我们报告了一系列基于 BINOL 支架、带有亲水侧链装饰的刚性芳香疏水单元的手性表面活性剂。由于离子配对,使用阴离子侧链能更好地与手性铂(II)催化剂相互作用,从而提高硫醚与过氧化氢发生硫氧化反应的对映体选择性。这一概念验证为设计新型手性表面活性剂开辟了道路,这种表面活性剂可用于将传统上在有机介质中进行的多种立体选择性反应转移到水中。
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Chiral surfactants to enhance stereoselectivity in asymmetric catalytic sulfoxidation in water

Chiral surfactants can provide asymmetric environments in water that can enhance the stereoselectivity of chiral metal catalysts. Due to the high dynamic nature of micelles, this specific field of research has been seldom investigated. The design of the surfactant and its interaction with the catalyst is crucial to improve stereoselectivity. We report a series of chiral surfactants bearing rigid aromatic hydrophobic units based on the BINOL scaffold decorated with hydrophilic side chains. In particular, the use of anionic side chains provide better interaction with chiral Pt(II) catalysts due to ion pairing leading to improvements in the enantioselectivity of the sulfoxidation reaction of thioethers with hydrogen peroxide. This proof of concept contribution opens the way to the design of new classes of chiral designer surfactants that could be applied to move to water many classes of stereoselective reactions traditionally carried out in organic media.

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来源期刊
Catalysis Today
Catalysis Today 化学-工程:化工
CiteScore
11.50
自引率
3.80%
发文量
573
审稿时长
2.9 months
期刊介绍: Catalysis Today focuses on the rapid publication of original invited papers devoted to currently important topics in catalysis and related subjects. The journal only publishes special issues (Proposing a Catalysis Today Special Issue), each of which is supervised by Guest Editors who recruit individual papers and oversee the peer review process. Catalysis Today offers researchers in the field of catalysis in-depth overviews of topical issues. Both fundamental and applied aspects of catalysis are covered. Subjects such as catalysis of immobilized organometallic and biocatalytic systems are welcome. Subjects related to catalysis such as experimental techniques, adsorption, process technology, synthesis, in situ characterization, computational, theoretical modeling, imaging and others are included if there is a clear relationship to catalysis.
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