Michalchuk Adam A L, Emmerling Franziska
BAM Federal Institute for Materials Research and Testing, Richard-Willstätter-Strasse11, 12489, Berlin, Germany.
Department of Chemistry, Humboldt-Universität zu Berlin, Brook-Taylor-Strasse 2, 12489, Berlin, Germany.
Angew Chem Int Ed Engl. 2022 May 16;61(21):e202117270. doi: 10.1002/anie.202117270. Epub 2022 Apr 5.
Mechanochemical transformations offer environmentally benign synthesis routes, whilst enhancing both the speed and selectivity of reactions. In this regard, mechanochemistry promises to transform the way in which chemistry is done in both academia and industry but is greatly hindered by a current lack of mechanistic understanding. The continued development and use of time-resolved in situ (TRIS) approaches to monitor mechanochemical reactions provides a new dimension to elucidate these fascinating transformations. We here discuss recent trends in method development that have pushed the boundaries of mechanochemical research. New features of mechanochemical reactions obtained by TRIS techniques are subsequently discussed, which sheds light on how different TRIS approaches have been used. Emphasis is placed on the strength of combining complementary techniques. Finally, we outline our views on the potential of TRIS methods in mechanochemical research, towards establishing a new, environmentally benign paradigm in the chemical sciences.
机械力化学转化提供了环境友好的合成路线,同时提高了反应的速度和选择性。在这方面,机械力化学有望改变学术界和工业界进行化学研究的方式,但目前由于缺乏机理理解而受到极大阻碍。持续开发和使用时间分辨原位(TRIS)方法来监测机械力化学反应为阐明这些迷人的转化提供了新的维度。我们在此讨论了推动机械力化学研究边界的方法开发的最新趋势。随后讨论了通过TRIS技术获得的机械力化学反应的新特征,这揭示了不同的TRIS方法是如何被使用的。重点强调了结合互补技术的优势。最后,我们概述了我们对TRIS方法在机械力化学研究中的潜力的看法,以期在化学科学中建立一种新的、环境友好的范式。