Wu Hanqing, Lin Liangbin, Zhu Minqian, Guo Hongyu, Yang Fafu
College of Chemistry and Materials Sciences, Fujian Normal University, Fuzhou 350007, PR China; Fujian Key Laboratory of Polymer Materials, Fuzhou 350007, PR China.
College of Chemistry and Materials Sciences, Fujian Normal University, Fuzhou 350007, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2025 Jan 5;324:124951. doi: 10.1016/j.saa.2024.124951. Epub 2024 Aug 8.
Glycerol is an important biological molecule, but no facile and on-site fluorescence sensor for detecting glycerol has been reported up to now. In this work, the organic fluorescent sensor for glycerol was prepared based on hydrazine-bridged bis-tetraphenylimidazole (HBT), which exhibited an excellent "turn-on" blue fluorescence response in detecting glycerol for the first time. The good sensing selectivity for glycerol among all kinds of organic molecules and ions was confirmed with the low detection limitation (LOD=0.48 μM). The sensing mechanism was proposed as that the photo-induced electron transfer process between the lone pair electrons of the Schiff group and the tetraphenylimidazole moiety was interrupted by the multiple hydrogen-bond action between glycerol and HBT. The sensing ability of HBT for glycerol was successfully used for the detection of glycerol in test paper and real samples (glycerine enema and aloe vera gel), demonstrating the good potential for simple, rapid and in-situ detection of glycerol in daily life.
甘油是一种重要的生物分子,但迄今为止尚未报道过用于检测甘油的简便且现场可用的荧光传感器。在这项工作中,基于肼桥联双四苯基咪唑(HBT)制备了用于甘油的有机荧光传感器,该传感器首次在检测甘油时表现出出色的“开启”蓝色荧光响应。通过低检测限(LOD = 0.48 μM)证实了该传感器在各种有机分子和离子中对甘油具有良好的传感选择性。提出的传感机制是,甘油与HBT之间的多重氢键作用中断了席夫基团孤对电子与四苯基咪唑部分之间的光诱导电子转移过程。HBT对甘油的传感能力成功用于试纸和实际样品(甘油灌肠剂和芦荟凝胶)中甘油的检测,证明了在日常生活中对甘油进行简单、快速和原位检测的良好潜力。