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利用激光诱导应力波激活界面机械增感剂。

Interfacial Mechanophore Activation Using Laser-Induced Stress Waves.

出版信息

J Am Chem Soc. 2018 Apr 18;140(15):5000-5003. doi: 10.1021/jacs.8b01427. Epub 2018 Apr 4.

Abstract

A new methodology is developed to activate and characterize mechanochemical transformations at a solid interface. Maleimide-anthracene mechanophores covalently anchored at a fused silica-polymer interface are activated using laser-induced stress waves. Spallation-induced mechanophore activation is observed above a threshold activation stress of 149 MPa. The retro [4+2] cycloaddition reaction is confirmed by fluorescence microscopy, XPS, and ToF-SIMS measurements. Control experiments with specimens in which the mechanophore is not covalently attached to the polymer layer exhibit no activation. In contrast to activation in solution or bulk polymers, whereby a proportional increase in mechanophore activity is observed with applied stress, interfacial activation occurs collectively with spallation of the polymer film.

摘要

一种新的方法学被开发出来,以在固体界面处激活和表征机械化学转变。通过激光诱导应力波,使共价固定在熔融石英-聚合物界面上的马来酰亚胺-蒽机械试剂发生激活。在 149MPa 以上的阈值激活应力下观察到了剥落诱导的机械试剂激活。荧光显微镜、XPS 和 ToF-SIMS 测量证实了反 [4+2] 环加成反应。用未共价附着在聚合物层上的机械试剂的对照实验没有观察到激活。与在溶液或本体聚合物中的激活不同,在溶液或本体聚合物中,随着施加的应力的增加,机械试剂的活性呈比例增加,而界面激活则与聚合物膜的剥落集体发生。

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