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通过机械化学改变产物选择性。

Altering Product Selectivity by Mechanochemistry.

机构信息

Institute of Organic Chemistry, RWTH Aachen University , Landoltweg 1, D-52074 Aachen, Germany.

出版信息

J Org Chem. 2017 Apr 21;82(8):4007-4019. doi: 10.1021/acs.joc.6b02887. Epub 2017 Jan 24.

Abstract

Mechanochemical activation achieved by grinding, shearing, pulling, or milling opens unique opportunities in synthetic organic chemistry. Common features are that mechanochemistry facilitates reactions with insoluble reactants, enables high-yielding solvent-free synthetic procedures, and shortens reaction times, among others. However, mechanochemical techniques can also alter chemical reactivity and selectivity compared to the analogous solution-based protocols. As a consequence, solvent-free milling can lead to different product compositions or equilibration mixtures than in solution. Reactions by milling have also allowed the trapping and characterization of elusive intermediates and materials. In this Perspective we highlight a few selected examples that illustrate the value of mechanochemistry in uncovering interesting chemical reactivity, which is often masked in typical liquid-phase synthesis.

摘要

机械化学激活通过研磨、剪切、拉伸或铣削实现,为合成有机化学开辟了独特的机会。常见的特点是机械化学促进了与不溶性反应物的反应,实现了高产率的无溶剂合成程序,并缩短了反应时间等。然而,与类似的基于溶液的方案相比,机械化学技术也可以改变化学反应性和选择性。因此,无溶剂研磨可能会导致不同的产品组成或平衡混合物,而不是在溶液中。通过研磨进行的反应还允许捕获和表征难以捉摸的中间体和材料。在这篇观点文章中,我们强调了一些精选的例子,这些例子说明了机械化学在揭示有趣的化学反应性方面的价值,这些反应性通常在典型的液相合成中被掩盖。

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