Department of Chemistry and the Beckman Institute of Advanced Science and Technology, University of Illinois at Urbana-Champaign, 405 N. Mathews Ave., MC 251, Urbana, Illinois 61801, USA.
Chem Soc Rev. 2013 Sep 21;42(18):7497-506. doi: 10.1039/c2cs35463b.
Long chain polymers have a unique ability to become highly extended in elongational flow fields. The forces developed along the backbone give rise to scission of the chains near their center. Recently, this unique property of polymers has been adopted to explore new chemical transformations by embedding structural elements into the backbone designed to undergo site-specific bond cleavage, termed mechanophores. Experimental techniques to generate elongational flow fields exist in a variety of different arrangements and have been used to study polymer mechanochemistry in solution. This tutorial review will discuss progress in the field of polymer mechanochemistry as well as survey the techniques used to generate elongational flow fields. Ultrasonication will be highlighted as the technique that has been widely adopted to screen mechanophore reactivity in solution.
长链聚合物具有在拉伸流场中高度伸展的独特能力。沿主链产生的力导致链在其中心附近发生断裂。最近,聚合物的这种独特性质已被采用,通过将结构元件嵌入到设计为发生特定位置键断裂的主链中,来探索新的化学转化,这些结构元件被称为机械试剂。用于产生拉伸流场的实验技术具有各种不同的布置,并且已被用于研究溶液中的聚合物机械化学。本综述将讨论聚合物机械化学领域的进展,并调查用于产生拉伸流场的技术。超声处理将作为一种广泛采用的技术被突出显示,用于筛选溶液中的机械试剂反应性。