Institute for Technical Chemistry and Environmental Chemistry, Friedrich-Schiller University Jena, Lessingstr. 12, D-07743 Jena, Germany.
Chem Soc Rev. 2011 May;40(5):2317-29. doi: 10.1039/c0cs00195c. Epub 2011 Mar 8.
During the last decade numerous protocols have been published using the method of ball milling for synthesis all over the field of organic chemistry. However, compared to other methods leaving their marks on the road to sustainable synthesis (e.g. microwave, ultrasound, ionic liquids) chemistry in ball mills is rather underrepresented in the knowledge of organic chemists. Especially, in the last three years the interest in this technique raised continuously, culminating in several high-quality synthetic procedures covering the whole range of organic synthesis. Thus, the present tutorial review will be focused on the highlights using this method of energy transfer and energy dissipation. The central aim is to motivate researchers to take notice of ball mills as chemical reactors, implementing this technique in everyday laboratory use and thus, pave the ground for future activities in this interdisciplinary field of research.
在过去的十年中,有机化学领域发表了许多使用球磨法合成的协议。然而,与其他在可持续合成方面留下痕迹的方法相比(例如微波、超声波、离子液体),球磨中的化学在有机化学家的知识中相对较少。特别是在过去三年中,人们对这项技术的兴趣不断增加,最终形成了几种涵盖整个有机合成范围的高质量合成方法。因此,本教程综述将重点介绍使用这种能量传递和能量耗散方法的亮点。其核心目标是激励研究人员注意作为化学反应器的球磨机,在日常实验室使用中实施这项技术,从而为这一跨学科研究领域的未来活动奠定基础。