Cravotto Giancarlo, Cintas Pedro
Dipartimento di Scienza e Tecnologia del Farmaco, Università di Torino, Via P. Giuria 9, I-10125 Torino, Italy.
Chem Soc Rev. 2006 Feb;35(2):180-96. doi: 10.1039/b503848k. Epub 2005 Oct 10.
Ultrasound, an efficient and virtually innocuous means of activation in synthetic chemistry, has been employed for decades with varied success. Not only can this high-energy input enhance mechanical effects in heterogeneous processes, but it is also known to induce new reactivities leading to the formation of unexpected chemical species. What makes sonochemistry unique is the remarkable phenomenon of cavitation, currently the subject of intense research which has already yielded thought-provoking results. This critical review is aimed at discussing the present status of cavitational chemistry and some of the underlying phenomena, and to highlight some recent applications and trends in organic sonochemistry, especially in combination with other sustainable technologies. (151 references.).
超声波作为合成化学中一种高效且几乎无害的活化手段,已被应用数十年,取得了不同程度的成功。这种高能量输入不仅能增强多相过程中的机械效应,还已知会引发新的反应活性,导致形成意想不到的化学物种。声化学的独特之处在于显著的空化现象,目前这是深入研究的主题,已经产生了引人深思的结果。这篇综述旨在讨论空化化学的现状以及一些潜在现象,并突出有机声化学的一些最新应用和趋势,特别是与其他可持续技术相结合的情况。(参考文献151篇)