Key Laboratory of Eco-Textiles, Ministry of Education, Jiangnan University, Wuxi 214122, People's Republic of China.
Limerick Pulp and Paper Centre, Department of Chemical Engineering, University of New Brunswick, Fredericton, New Brunswick E3B 5A3, Canada.
Biomacromolecules. 2021 Nov 8;22(11):4479-4488. doi: 10.1021/acs.biomac.1c00595. Epub 2021 Oct 4.
The fabrication of biomimetic photonic materials with environmental stimuli-responsive functions from entirely biobased materials is becoming increasingly challenging with the growing demand for biodegradable materials. Herein, the effect of glucan with different molecular weights on the mechanical performance and tunable structural color of iridescent CNC composite films was investigated. The existence of glucan did not influence the self-assembly performance of CNCs, but rather led to an improvement in the mechanical performance, enabling cholesteric CNC composite films with an adjustable structural color. Simultaneously, the iridescent films showed a conspicuous redshift and enlarged initial pitch without obstruction of the chiral structure. In response to environmental humidity, the structural colors of the iridescent composite films can be changed by regulating their chiral nematic structure. In particular, the films demonstrate a reversible structural color change between blue and red at RH between 50 and 98%. The resulting biobased iridescent composite films have potential applications in decorative coating, optical and humidity sensing, and anticounterfeiting.
用完全生物基材料制备对环境刺激具有响应功能的仿生光子材料,这一需求随着可生物降解材料的增长变得越来越具有挑战性。在此,研究了不同分子量的葡聚糖对彩虹状 CNC 复合膜的机械性能和可调结构色的影响。葡聚糖的存在并不影响 CNC 的自组装性能,反而提高了机械性能,使具有可调结构色的胆甾相 CNC 复合膜成为可能。同时,彩虹膜在不破坏手性结构的情况下表现出明显的红移和初始间距增大。响应环境湿度,彩虹复合膜的结构颜色可以通过调节其向列型织构来改变。特别地,在 50%至 98%的相对湿度范围内,薄膜在蓝色和红色之间表现出可逆的结构颜色变化。所得到的基于生物的彩虹复合膜在装饰涂层、光学和湿度传感以及防伪领域具有潜在应用。