Woodcock Jeremiah W, Beams Ryan, Davis Chelsea S, Chen Ning, Stranick Stephan J, Shah Darshil U, Vollrath Fritz, Gilman Jeffrey W
Materials Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland, USA.
Oxford Silk Group, Zoology Department, Oxford University, Oxford, United Kingdom.
Adv Mater Interfaces. 2017;4(10). doi: 10.1002/admi.201601018.
Polymer composite materials are found throughout the world both natural and artificial in origin. In the vast majority of applications in these arenas, composites serve as structural support or reinforcement. Demand for lightweight tough composites is growing in multiple application spaces such as aerospace, biomaterials, and infrastructure with physical properties as diverse as the applications. The unifying component in all composites is the presence of the interphase. Many measurement techniques and measurement tools have been developed for the study of this crucial region in composite materials. Many of these methods are great for the measurement and study of bulk properties or model systems. However, development of tools that permit the direct observation of interactions at the interphase during applied stress are needed. Here we employ fluorescence lifetime imaging and hyperspectral imaging to observe activation of a fluorogenic dye at the composite interface as a result of applied stress. The advantages of this system include commercial availability of the dye precursor, and simple one-pot functionalization. The attachment of the dye at the interface is easily monitored through emission wavelength shifts or fluorescence lifetime. Interfacial mechano-responsive dyes have potential for both fundamental studies as well as industrial use as a structural health monitoring tool.
聚合物复合材料在世界各地都有发现,其来源既有天然的也有人造的。在这些领域的绝大多数应用中,复合材料用作结构支撑或增强材料。在航空航天、生物材料和基础设施等多个应用领域,对轻质坚韧复合材料的需求不断增长,其物理性能与应用一样多种多样。所有复合材料的统一组成部分是界面相的存在。已经开发了许多测量技术和测量工具来研究复合材料中的这一关键区域。这些方法中的许多对于测量和研究体相性质或模型系统非常有用。然而,需要开发能够在施加应力期间直接观察界面相互作用的工具。在这里,我们采用荧光寿命成像和高光谱成像来观察由于施加应力而在复合材料界面处荧光染料的活化。该系统的优点包括染料前体的商业可得性以及简单的一锅法功能化。通过发射波长偏移或荧光寿命可以很容易地监测染料在界面处的附着情况。界面机械响应染料在基础研究以及作为结构健康监测工具的工业应用方面都具有潜力。