Shen Chen, Wang Zizheng, Huang Rui, Bao Jinying, Li Zhaozhong, Zhang Lanying, Lan Ruochen, Yang Huai
School of Materials Science and Engineering, Peking University, Beijing 100871, P. R. China.
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, P. R. China.
ACS Appl Mater Interfaces. 2022 Apr 13;14(14):16764-16771. doi: 10.1021/acsami.2c03420. Epub 2022 Mar 30.
Dynamic photonic crystals with tunable structural colors have been a hot topic in the research of anticounterfeiting devices, decoration, and detection. In this work, we prepared cholesteric liquid crystalline network (CLCN)-based photonic crystals that present humidity- and SO gas-responsive behaviors. The covalently cross-linked CLCN film presents humidity-responsive color changes due to the swelling/deswelling of the matrix under different humidity conditions. When treating the CLCN film with SO gas, the carboxylic salt converted to the acid and the film was not able to respond to the humidity change anymore. The mechanism of the SO gas-gated humidity responsiveness of the CLCN film was characterized. It was found that the acidic gas caused changes of pH, resulting in the conversion of the salt to acid and alteration of the surface property. The influence of concentration of SO gas and pH on humidity responsiveness of the CLCN film was investigated. We hope that this method provides inspirations for the design and fabrication of visualized pH and acidic gas detectors.
具有可调结构颜色的动态光子晶体一直是防伪装置、装饰和检测研究中的热门话题。在这项工作中,我们制备了基于胆甾相液晶网络(CLCN)的光子晶体,其呈现出对湿度和SO气体的响应行为。共价交联的CLCN薄膜由于基质在不同湿度条件下的溶胀/去溶胀而呈现出湿度响应颜色变化。用SO气体处理CLCN薄膜时,羧酸盐转化为酸,薄膜不再能够响应湿度变化。对CLCN薄膜的SO气体门控湿度响应机制进行了表征。发现酸性气体导致pH值变化,从而导致盐转化为酸并改变表面性质。研究了SO气体浓度和pH值对CLCN薄膜湿度响应性的影响。我们希望这种方法能为可视化pH值和酸性气体探测器的设计和制造提供灵感。