Department of Macromolecular Chemistry I and Bavarian Polymer Institute, University of Bayreuth, Bayreuth, 95440, Germany.
Center for Hierarchical Manufacturing, Department of Polymer Science and Engineering, University of Massachusetts Amherst, 120 Governors Drive, Amherst, MA, 01003, USA.
Macromol Rapid Commun. 2020 Apr;41(8):e2000069. doi: 10.1002/marc.202000069. Epub 2020 Mar 13.
In nature, animals such as chameleons are well-known for the complex color patterns of their skin and the ability to adapt and change the color by manipulating sophisticated photonic crystal systems. Artificial gradient photonic materials are inspired by these color patterns. A concept for the preparation of such materials and their function as tunable mechanochromic materials is presented in this work. The system consists of a 1D polymer photonic crystal on a centimeter scale on top of an elastic poly(dimethylsiloxane) substrate with a gradient in stiffness. In the unstrained state, this system reveals a uniform red reflectance over the entire sample. Upon deformation, a gradient in local strain of the substrate is formed and transferred to the photonic crystal. Depending on the magnitude of this local strain, the thickness of the photonic crystal decreases continuously, resulting in a position-dependent blue shift of the reflectance peak and hence the color in a rainbow-like fashion. Using more sophisticated hard-soft-hard-soft-hard gradient elastomers enables the realization of stripe-like reflectance patterns. Thus, this approach allows for the tunable formation of reflectance gradients and complex reflectance patterns. Envisioned applications are in the field of mechanochromic sensors, telemedicine, smart materials, and metamaterials.
在自然界中,变色龙等动物以其皮肤复杂的颜色图案和通过操纵复杂的光子晶体系统来适应和改变颜色的能力而闻名。人工梯度光子材料是受这些颜色图案启发而产生的。本工作提出了一种制备这种材料的概念及其作为可调谐机械变色材料的功能。该系统由厘米级的一维聚合物光子晶体和具有刚度梯度的弹性聚二甲基硅氧烷(PDMS)基底组成。在未受应变的状态下,整个样品呈现均匀的红色反射率。在变形过程中,在基底中形成局部应变的梯度,并传递到光子晶体。根据局部应变的大小,光子晶体的厚度连续减小,导致反射峰的位置发生连续蓝移,从而以彩虹的方式改变颜色。使用更复杂的软硬-软-硬-软-硬梯度弹性体可实现条纹状反射图案。因此,这种方法可以实现反射率梯度和复杂反射图案的可调谐形成。预期的应用领域包括机械变色传感器、远程医疗、智能材料和超材料。