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简单镍(II)催化剂促进的硫醇与膦酸酯的路易斯酸促进的需氧氧化偶联:底物范围和机理研究

Lewis Acid Promoted Aerobic Oxidative Coupling of Thiols with Phosphonates by Simple Nickel(II) Catalyst: Substrate Scope and Mechanistic Studies.

作者信息

Xue Jing-Wen, Zeng Miao, Zhang Sicheng, Chen Zhuqi, Yin Guochuan

机构信息

School of Chemistry and Chemical Engineering, Key Laboratory of Material Chemistry for Energy Conversion and Storage, Ministry of Education, Hubei Key Laboratory of Material Chemistry and Service Failure , Huazhong University of Science and Technology , Wuhan 430074 , P.R. China.

出版信息

J Org Chem. 2019 Apr 5;84(7):4179-4190. doi: 10.1021/acs.joc.9b00194. Epub 2019 Mar 25.

Abstract

Exploring new catalysts for efficient organic synthesis is among the most attractive topics in chemistry. Here, using Ni(OAc)/LA as catalyst (LA: Lewis acid), a novel catalyst strategy was developed for oxidative coupling of thiols and phosphonates to phosphorothioates with oxygen oxidant. The present study discloses that when Ni(OAc) alone was employed as the catalyst, the reaction proceeded very sluggishly with low yield, whereas adding non-redox-active metal ions such as Y to Ni(OAc) dramatically promoted its catalytic efficiency. The promotional effect is highly Lewis acidity dependent on the added Lewis acid, and generally, a stronger Lewis acid provided a better promotional effect. The stopped-flow kinetics confirmed that adding Y(OTf) can obviously accelerate the activation of thiols by Ni(II) and next accelerate its reaction with phosphonate to generate the phosphorothioate product. ESI-MS characterizations of the catalyst disclosed the formation of the heterobimetallic Ni(II)/Y(III) species in the catalyst solution. Additionally, this Ni(II)/LA catalyst can be applied in the synthesis of a series of phosphorothioate compounds including several commercial bioactive compounds. This catalyst strategy has clearly supported that Lewis acid can significantly improve the catalytic efficiency of these traditional metal ions in organic synthesis, thus opening up new opportunities in their catalyst design.

摘要

探索用于高效有机合成的新型催化剂是化学领域最具吸引力的课题之一。在此,以Ni(OAc)/LA(LA:路易斯酸)为催化剂,开发了一种新型催化剂策略,用于硫醇与膦酸酯在氧气氧化剂作用下氧化偶联生成硫代磷酸酯。本研究表明,单独使用Ni(OAc)作为催化剂时,反应进行得非常缓慢,产率较低,而向Ni(OAc)中添加非氧化还原活性金属离子如Y可显著提高其催化效率。促进效果高度依赖于所添加路易斯酸的路易斯酸度,一般来说,路易斯酸越强,促进效果越好。停流动力学证实,添加Y(OTf)可明显加速Ni(II)对硫醇的活化,进而加速其与膦酸酯的反应以生成硫代磷酸酯产物。催化剂的电喷雾电离质谱(ESI-MS)表征揭示了催化剂溶液中形成了异双金属Ni(II)/Y(III)物种。此外,这种Ni(II)/LA催化剂可应用于一系列硫代磷酸酯化合物的合成,包括几种商业生物活性化合物。这种催化剂策略明确支持了路易斯酸可显著提高这些传统金属离子在有机合成中的催化效率,从而为其催化剂设计开辟了新机遇。

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