Clough Jess M, Weder Christoph, Schrettl Stephen
Adolphe Merkle Institute, Chemin des Verdiers 4, Fribourg, 1700, Switzerland.
Macromol Rapid Commun. 2021 Jan;42(1):e2000528. doi: 10.1002/marc.202000528. Epub 2020 Nov 18.
Mechanochromic effects in structurally colored materials are the result of deformation-induced changes to their ordered nanostructures. Polymeric materials which respond in this way to deformation offer an attractive combination of characteristics, including continuous strain sensing, high strain resolution, and a wide strain-sensing range. Such materials are potentially useful for a wide range of applications, which extend from pressure-sensing bandages to anti-counterfeiting devices. Focusing on the materials design aspects, recent developments in this field are summarized. The article starts with an overview of different approaches to achieve mechanochromic effects in structurally colored materials, before the physical principles governing the interaction of light with each of these materials types are summarized. Diverse methodologies to prepare these polymers are then discussed in detail, and where applicable, naturally occurring materials that inspired the design of artificial systems are discussed. The capabilities and limitations of structurally colored materials in reporting and visualizing mechanical deformation are examined from a general standpoint and also in more specific technological contexts. To conclude, current trends in the field are highlighted and possible future opportunities are identified.
结构色材料中的机械变色效应是其有序纳米结构因变形而发生变化的结果。以这种方式对变形做出响应的聚合物材料具有一系列吸引人的特性,包括连续应变传感、高应变分辨率和宽应变传感范围。这类材料在从压力传感绷带到防伪装置等广泛应用中具有潜在用途。本文聚焦于材料设计方面,总结了该领域的最新进展。文章首先概述了在结构色材料中实现机械变色效应的不同方法,然后总结了光与每种材料类型相互作用所遵循的物理原理。接着详细讨论了制备这些聚合物的各种方法,并在适用的情况下讨论了启发人工系统设计的天然材料。从一般角度以及更具体的技术背景出发,研究了结构色材料在报告和可视化机械变形方面的能力和局限性。最后,突出了该领域当前的趋势并确定了未来可能的机遇。