Willis-Fox Niamh
Department of Materials, The University of Manchester, Manchester, United Kingdom.
Front Chem. 2024 Oct 16;12:1490847. doi: 10.3389/fchem.2024.1490847. eCollection 2024.
Using mechanical energy to drive chemical transformations is an exciting prospect to improve the sustainability of chemical reactions and to produce products not achievable by more traditional methods. monitoring of reaction pathways and chemical transformations is vital to deliver the reproducible results required for scale up to realize the potential of mechanochemistry beyond the chemistry lab. This mini review will discuss the recent advances in monitoring of ball milling and polymer mechanochemistry, highlighting the potential for shared knowledge for scale up.
利用机械能驱动化学转化是一个令人兴奋的前景,有助于提高化学反应的可持续性,并生产出用更传统方法无法实现的产品。监测反应途径和化学转化对于提供放大所需的可重复结果至关重要,以便在化学实验室之外实现机械化学的潜力。本综述将讨论球磨和聚合物机械化学监测方面的最新进展,强调扩大规模时共享知识的潜力。