Feng Haoyang, Shao Xiaoyang, Wang Zhenhua
Northwestern Polytechnical University, Frontiers Science Center for Flexible Electronics (FSCFE) & Institute of Flexible Electronics (IFE), Xi'an, 710072, China.
Chempluschem. 2024 Oct;89(10):e202400287. doi: 10.1002/cplu.202400287. Epub 2024 Aug 30.
Mechanochemistry constitutes a burgeoning field that investigates the chemical and physicochemical alterations of substances under mechanical force. It enables the synthesis of materials which is challenging to obtain via thermal, optical or electrical activation methods. In addition, it diminishes reliance on organic solvents and provides a novel route for green chemistry. Today, as a distinct branch alongside electrochemistry, photochemistry, and thermochemistry, mechanochemistry has emerged as a frontier research domain within chemistry and material science. In recent years, the intersection of mechanochemistry with controlled radical polymerization has witnessed rapid advancements, providing new routes to polymer science. Significantly, we have experienced breakthroughs in methods relying on sonochemistry, piezoelectricity and contact electrification. These methodologies not only facilitate the synthesis of polymers with high molecular weight but also enable precise control over polymer chain length and structure. Transitioning from harsh to mild conditions in mechanochemical routes has facilitated a significant improvement in the controllability of mechanochemical polymerization. From this perspective, we introduce the progress of mechanochemistry in controlled radical polymerization in recent years, aim to clarify the historcial development of this topic.
机械化学是一个新兴领域,研究物质在机械力作用下的化学和物理化学变化。它能够合成通过热、光或电活化方法难以获得的材料。此外,它减少了对有机溶剂的依赖,为绿色化学提供了一条新途径。如今,作为与电化学、光化学和热化学并列的一个独特分支,机械化学已成为化学和材料科学领域的前沿研究领域。近年来,机械化学与可控自由基聚合的交叉领域取得了迅速进展,为聚合物科学提供了新途径。值得注意的是,我们在依赖声化学、压电性和接触起电的方法上取得了突破。这些方法不仅有助于合成高分子量聚合物,还能精确控制聚合物链长和结构。机械化学路线从苛刻条件向温和条件的转变显著提高了机械化学聚合的可控性。从这个角度出发,我们介绍近年来机械化学在可控自由基聚合方面的进展,旨在阐明该主题的历史发展。