Lennox Cameron B, Borchers Tristan H, Gonnet Lori, Barrett Christopher J, Koenig Stefan G, Nagapudi Karthik, Friščić Tomislav
School of Chemistry, University of Birmingham Birmingham B15 2TT UK
Department of Chemistry, McGill University 801 Sherbrooke St. W. Montreal Quebec H3H 0B8 Canada.
Chem Sci. 2023 May 18;14(27):7475-7481. doi: 10.1039/d3sc01591b. eCollection 2023 Jul 12.
We demonstrate the use of a metal surface to directly catalyse copper-catalysed alkyne-azide click-coupling (CuAAC) reactions under the conditions of Resonant Acoustic Mixing (RAM) - a recently introduced and scalable mechanochemical methodology that uniquely eliminates the need for bulk solvent, as well as milling media. By using a simple copper coil as a catalyst, this work shows that direct mechanocatalysis can occur in an impact-free environment, relying solely on high-speed mixing of reagents against a metal surface, without the need for specially designed milling containers and media. By introducing an experimental setup that enables real-time Raman spectroscopy monitoring of RAM processes, we demonstrate 0th-order reaction kinetics for several selected CuAAC reactions, supporting surface-based catalysis. The herein presented RAM-based direct mechanocatalysis methodology is simple, enables the effective one-pot, two-step synthesis of triazoles a combination of benzyl azide formation and CuAAC reactions on a wide scope of reagents, provides control over reaction stoichiometry that is herein shown to be superior to that seen in solution or by using more conventional CuCl catalyst, and is applied for simple gram-scale synthesis of the anticonvulsant drug Rufinamide.
我们展示了在共振声学混合(RAM)条件下使用金属表面直接催化铜催化的炔烃-叠氮化物点击偶联(CuAAC)反应。RAM是一种最近引入的可扩展机械化学方法,独特地消除了对大量溶剂以及研磨介质的需求。通过使用简单的铜线圈作为催化剂,这项工作表明直接机械催化可以在无冲击环境中发生,仅依靠试剂与金属表面的高速混合,而无需特殊设计的研磨容器和介质。通过引入一种能够对RAM过程进行实时拉曼光谱监测的实验装置,我们证明了几个选定的CuAAC反应的零级反应动力学,支持基于表面的催化。本文提出的基于RAM的直接机械催化方法简单,能够在一锅两步中有效地合成三唑——在广泛的试剂上形成苄基叠氮化物和CuAAC反应相结合,提供对反应化学计量的控制,本文表明这种控制优于在溶液中或使用更传统的CuCl催化剂时的情况,并且该方法被应用于抗惊厥药物卢非酰胺的简单克级合成。