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调控机械化学重氮环丙烷[1,5]-σ 迁移反应的能量坐标景观。

Manipulating Reaction Energy Coordinate Landscape of Mechanochemical Diaza-Cope Rearrangement.

机构信息

School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China.

Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201203, China.

出版信息

Molecules. 2022 Apr 15;27(8):2570. doi: 10.3390/molecules27082570.

Abstract

Chiral vicinal diamines, a unique class of optically-active building blocks, play a crucial role in material design, pharmaceutical, and catalysis. Traditionally, their syntheses are all solvent-based approaches, which make organic solvent an indispensable part of their production. As part of our program aiming to develop chemical processes with reduced carbon footprints, we recently reported a highly practical and environmentally-friendly synthetic route to chiral vicinal diamines by solvent-free mechanochemical diaza-Cope rearrangement. We herein showed that a new protocol by co-milling with common laboratory solid additives, such as silica gel, can significantly enhance the efficiency of the reaction, compared to reactions in the absence of additives. One possible explanation is the Lewis acidic nature of additives that accelerates a key Schiff base formation step. Reaction monitoring experiments tracing all the reaction species, including reactants, intermediates, and product, suggested that the reaction profile is distinctly different from ball-milling reactions without additives. Collectively, this work demonstrated that additive effect is a powerful tool to manipulate a reaction pathway in mechanochemical diazo-Cope rearrangement pathway, and this is expected to find broad interest in organic synthesis using mechanical force as an energy input.

摘要

手性偕二胺是一类独特的手性构建模块,在材料设计、制药和催化领域发挥着关键作用。传统上,它们的合成都是基于溶剂的方法,这使得有机溶剂成为其生产过程中不可或缺的一部分。作为我们旨在开发具有更低碳足迹的化学工艺的计划的一部分,我们最近报道了一种通过无溶剂机械化学的氮杂-Cope 重排来合成手性偕二胺的高度实用和环保的新路线。我们在此表明,与没有添加剂的反应相比,通过与常见的实验室固体添加剂(如硅胶)共研磨的新方法可以显著提高反应效率。一种可能的解释是添加剂的路易斯酸性加速了关键的席夫碱形成步骤。跟踪所有反应物种(包括反应物、中间体和产物)的反应监测实验表明,反应过程与没有添加剂的球磨反应明显不同。总的来说,这项工作表明添加剂效应是在手性偕二胺氮杂-Cope 重排途径中操纵反应途径的有力工具,预计在手性偕二胺氮杂-Cope 重排途径中操纵反应途径的有力工具,这有望在使用机械能作为能量输入的有机合成中引起广泛关注。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32b8/9027841/27b5e89d379f/molecules-27-02570-sch001.jpg

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