Chen Lei, De Bo Guillaume
Department of Chemistry, University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
Angew Chem Int Ed Engl. 2025 Sep 8;64(37):e202511039. doi: 10.1002/anie.202511039. Epub 2025 Jun 18.
Mechanophores (mechanosensitive molecules) are usually activated by pulling force transduced by polymer covalently attached to their structures. A variety of mechanophores have been described to date but many rely on a limited number of core structures. The diversity of products formed mechanochemically could be improved by promoting the scission of varied bonds within a single mechanophore. 4-membered rings are particularly suited for this as two sets of products can be obtained by formal retro-[2 + 2] cycloaddition depending on the pulling direction. This concept has been applied to a couple of mechanophores but the repositioning of the anchoring points often requires a redesign of the structures, and the pulling activation is not amenable to the release of the products. Here we show that the unique pushing activation of a rotaxane actuator enables the selective activation of covalent bonds parallel or perpendicular to the main chain in diazetidinone and β-lactam mechanophores. The selectivity depends on the orientation of the bulky substituents pointing toward or away from the incoming macrocycle. We were able to release ketene and triaryl imine/ethene molecules, and to generate imine, azobenzene, and isocyanate units. This alternative activation method demonstrates how to elicit new reactivity from known mechanophores and should inspire the design of new ones. The variety of structures released/generated here illustrate how this approach can be used for the release of reactive species and other functional molecules.
机械响应分子(机械敏感分子)通常通过与其结构共价连接的聚合物传导的拉力来激活。迄今为止,已描述了多种机械响应分子,但许多都依赖于有限数量的核心结构。通过促进单个机械响应分子内不同键的断裂,可以改善机械化学形成的产物的多样性。四元环特别适合于此,因为根据拉动方向,通过形式上的逆[2 + 2]环加成可以获得两组产物。这一概念已应用于一些机械响应分子,但锚定点的重新定位通常需要重新设计结构,并且拉动激活不适用于产物的释放。在这里,我们表明轮烷致动器独特的推动激活能够选择性地激活二氮杂环丁二酮和β-内酰胺机械响应分子中与主链平行或垂直的共价键。选择性取决于大体积取代基指向或远离进入的大环的方向。我们能够释放乙烯酮和三芳基亚胺/乙烯分子,并生成亚胺、偶氮苯和异氰酸酯单元。这种替代激活方法展示了如何从已知的机械响应分子中引发新的反应性,并应激发新机械响应分子的设计。此处释放/生成的各种结构说明了这种方法如何用于释放活性物种和其他功能分子。