Zhan Yi-Yang, Ogawa Daisuke, Sano Koki, Wang Xiang, Araoka Fumito, Sakai Nobuyuki, Sasaki Takayoshi, Ishida Yasuhiro
RIKEN Center for Emergent Matter Science, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.
Department of Chemistry and Materials, Faculty of Textile Science and Technology, Shinshu University, 3-15-1 Tokida, Ueda, Nagano, 386-8567, Japan.
Angew Chem Int Ed Engl. 2023 Dec 21;62(52):e202311451. doi: 10.1002/anie.202311451. Epub 2023 Oct 20.
Unlike absorption-based colors of dyes and pigments, reflection-based colors of photonic crystals, so called "structural colors", are responsive to external stimuli, but can remain unfaded for over ten million years, and therefore regarded as a next-generation coloring mechanism. However, it is a challenge to rationally design the spectra of structural colors, where one structure gives only one reflection peak defined by Bragg's law, unlike those of absorption-based colors. Here, we report a reconfigurable photonic crystal that exhibits single-peak and double-peak structural colors. This photonic crystal is composed of a colloidal nanosheet in water, which spontaneously adopts a layered structure with single periodicity (407 nm). After a temperature-gradient treatment, the photonic crystal segregates into two regions with shrunken (385 nm) and expanded (448 nm) periodicities, and thus exhibits double reflection peaks that are blue- and red-shifted from the original one, respectively. Notably, the transition between the single-peak and double-peak states is reversible.
与基于吸收的染料和颜料颜色不同,光子晶体基于反射的颜色,即所谓的“结构色”,对外部刺激有响应,但可以保持一千万年以上不褪色,因此被视为下一代着色机制。然而,合理设计结构色的光谱是一项挑战,因为与基于吸收的颜色不同,一种结构只会给出由布拉格定律定义的一个反射峰。在这里,我们报道了一种可重构光子晶体,它呈现出单峰和双峰结构色。这种光子晶体由水中的胶体纳米片组成,它会自发地形成具有单一周期(407 nm)的层状结构。经过温度梯度处理后,光子晶体分离成两个区域,其周期分别收缩(385 nm)和扩展(448 nm),从而呈现出分别从原始反射峰蓝移和红移的两个反射峰。值得注意的是,单峰和双峰状态之间的转变是可逆的。