Jia Yanfei, Han Bing, Liu Xiao-Ting, Liu Yuhao, Sun Yuanqiang, Lu Chao
Green Catalysis Center and College of Chemistry, Zhengzhou University, Zhengzhou, 450001, China.
Green Catalysis Center and College of Chemistry, Zhengzhou University, Zhengzhou, 450001, China.
Talanta. 2024 Apr 1;270:125567. doi: 10.1016/j.talanta.2023.125567. Epub 2023 Dec 22.
Water in organic solvents is a prevalent impurity that significantly influences chemical reactions and industrial processes. Carbon dots (CDs) gained attention as promising tools for chemosensing due to their advantageous characteristics, including easy synthesis, cost-effectiveness, and excellent adjustability and stability. However, limited solubility in water and turn off fluorescence response mode hinder the practical utilization of CDs for water sensing. To tackle such dilemma, a highly water-soluble CDs with distinctive hydrogen-bond-induced emission (HBIE) was rationally designed through introducing sulfone group into the widely employed p-phenylenediamine precursor. The inclusion of sulfone group imparts the CDs with notable water solubility, as well as distinctive ratiometric fluorescent response towards water content, exhibiting high sensitivity and selectivity. Upon exposure to water, the emission color of CDs undergoes a real-time transition from blue to yellow-green, which can be readily discerned by naked eyes. The CDs have been successfully applied in detecting water in commercially available alcohol. This study presents a straightforward yet efficacious approach for rationally design of CDs with unique HBIE characteristics and ratiometric fluorescent response, offering great potential for practical chemosensing applications.
有机溶剂中的水是一种普遍存在的杂质,会显著影响化学反应和工业过程。碳点(CDs)因其具有易于合成、成本效益高、可调节性和稳定性优异等优势特性,作为有前景的化学传感工具而受到关注。然而,在水中溶解度有限以及荧光响应模式关闭阻碍了碳点在水传感中的实际应用。为了解决这一困境,通过将砜基引入广泛使用的对苯二胺前体,合理设计了一种具有独特氢键诱导发射(HBIE)的高水溶性碳点。砜基的引入赋予了碳点显著的水溶性,以及对水含量独特的比率荧光响应,表现出高灵敏度和选择性。暴露于水时,碳点的发射颜色会从蓝色实时转变为黄绿色,肉眼即可轻松辨别。这些碳点已成功应用于检测市售酒精中的水。本研究提出了一种简单而有效的方法,用于合理设计具有独特HBIE特性和比率荧光响应的碳点,为实际化学传感应用提供了巨大潜力。