Marco Arnau, Guirado Gonzalo, Sebastián Rosa María, Hernando Jordi
Departament de Química, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, Spain.
Front Chem. 2023 May 23;11:1176661. doi: 10.3389/fchem.2023.1176661. eCollection 2023.
By enabling rapid, cost-effective, user-friendly and detection of carbon dioxide, colorimetric CO sensors are of relevance for a variety of fields. However, it still remains a challenge the development of optical chemosensors for CO that combine high sensitivity, selectivity and reusability with facile integration into solid materials. Herein we pursued this goal by preparing hydrogels functionalized with spiropyrans, a well-known class of molecular switches that undergo different color changes upon application of light and acid stimuli. By varying the nature of the substituents of the spiropyran core, different acidochromic responses are obtained in aqueous media that allow discriminating CO from other acid gases (e.g., HCl). Interestingly, this behavior can be transferred to functional solid materials by synthesizing polymerizable spiropyran derivatives, which are used to prepare hydrogels. These materials preserve the acidochromic properties of the incorporated spiropyrans, thus leading to selective, reversible and quantifiable color changes upon exposure to different CO amounts. In addition, CO desorption and, therefore, recovery of the initial state of the chemosensor is favored by irradiation with visible light. This makes spiropyran-based chromic hydrogels promising systems for the colorimetric monitorization of carbon dioxide in a diversity of applications.
通过实现对二氧化碳的快速、经济高效、用户友好的检测,比色法二氧化碳传感器在多个领域具有重要意义。然而,开发兼具高灵敏度、选择性和可重复使用性且易于集成到固体材料中的用于检测二氧化碳的光学化学传感器仍然是一项挑战。在此,我们通过制备用螺吡喃功能化的水凝胶来实现这一目标,螺吡喃是一类著名的分子开关,在光照和酸刺激下会发生不同的颜色变化。通过改变螺吡喃核心取代基的性质,在水性介质中可获得不同的酸致变色响应,从而能够区分二氧化碳与其他酸性气体(如氯化氢)。有趣的是,这种行为可以通过合成可聚合的螺吡喃衍生物转移到功能性固体材料中,这些衍生物用于制备水凝胶。这些材料保留了所掺入螺吡喃的酸致变色特性,因此在暴露于不同量的二氧化碳时会导致选择性、可逆且可量化的颜色变化。此外,通过可见光照射有利于二氧化碳解吸,从而使化学传感器恢复到初始状态。这使得基于螺吡喃的变色水凝胶成为在各种应用中比色监测二氧化碳的有前景的体系。