Xiao Dunyi, Ma Huiru, Luo Wei, Guan Jianguo
School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.
School of Chemistry, Chemical Engineering and Life Science, Wuhan University of Technology, Wuhan 430070, China.
Polymers (Basel). 2024 May 29;16(11):1530. doi: 10.3390/polym16111530.
Responsive photonic crystal hydrogel sensors are renowned for their colorimetric sensing ability and can be utilized in many fields such as medical diagnosis, environmental detection, food safety, and industrial production. Previously, our group invented responsive photonic nanochains (RPNCs), which improve the response speed of photonic crystal hydrogel sensors by at least 2 to 3 orders of magnitude. However, RPNCs are dispersed in a liquid medium, which needs a magnetic field to orient them for the generation of structural colors. In addition, during repeated use, the process of cleaning and redispersing can cause entanglement, breakage, and a loss of RPNCs, resulting in poor stability. Moreover, when mixing with the samples in liquid, the RPNCs may lead to the contamination of the samples being tested. In this paper, we incorporate one-dimensional oriented RPNCs with agarose gel film to prepare heterogeneous hydrogel films. Thanks to the non-responsive and porous nature of the agarose gel, the protons diffuse freely in the gel, which facilitates the fast response of the RPNCs. Furthermore, the "frozen" RPNCs in agarose gel not only enable the display of structural colors without the need for a magnet but also improve the cycling stability and long-term durability of the sensor, and will not contaminate the samples. This work paves the way for the application of photonic crystal sensors.
响应型光子晶体水凝胶传感器以其比色传感能力而闻名,可用于医学诊断、环境检测、食品安全和工业生产等许多领域。此前,我们团队发明了响应型光子纳米链(RPNCs),它将光子晶体水凝胶传感器的响应速度提高了至少2至3个数量级。然而,RPNCs分散在液体介质中,需要磁场使其定向以产生结构色。此外,在重复使用过程中,清洗和重新分散过程会导致RPNCs缠结、断裂和损失,从而导致稳定性较差。而且,当与液体中的样品混合时,RPNCs可能会导致被测样品受到污染。在本文中,我们将一维定向RPNCs与琼脂糖凝胶膜结合,制备出异质水凝胶膜。由于琼脂糖凝胶的无响应和多孔性质,质子可在凝胶中自由扩散,这有利于RPNCs的快速响应。此外,琼脂糖凝胶中“固定”的RPNCs不仅无需磁场就能显示结构色,还提高了传感器的循环稳定性和长期耐用性,并且不会污染样品。这项工作为光子晶体传感器的应用铺平了道路。