State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P. R. China.
ACS Sens. 2022 Jul 22;7(7):1946-1957. doi: 10.1021/acssensors.2c00708. Epub 2022 Jul 12.
Herein, a novel blue aggregation-induced enhanced emission (AIEE) material 4--(naphthalen-l-yl)-3,5-bis(4--phenyl-1-naphthylamine)phenyl-4-1,2,4-triazole () is developed and used as a fluorescent chemosensor for sulfur mustard (SM) simulant 2-chloroethyl ethyl sulfide (2-CEES) vapor. The chemosensor is designed by introducing an electron-donating -phenyl-1-naphthylamine group at 3 and 5 position of 4-1,2,4-triazole (TAZ) to enhance the nucleophilicity of the TAZ group, and a naphthalene ring is connected to 4 position of the TAZ group to construct an AIEE molecule. The films show extraordinary stability and then are further used as reliable and portable fluorescent chemosensors. Upon exposure to 2-CEES vapor, the chemosensor exhibits an instantaneous fluorescence response (not more than 1 s). What should be noted is that this fluorescent chemosensor realizes the visualized detection of fluorescent color change from blue to green at "room temperature", which is rarely reported. The limit of detection is estimated to be 0.55 ppm, which is below the AEGL-1 (0.6 ppm for 1 min) safety ceiling level to SM exposure. Moreover, the chemosensor shows high selectivity toward 2-CEES vapor over closely related substances, including alkylating agents, aryl halide compounds, sulphur-containing compounds, and nerve agent mimics. More impressively, the chemosensor demonstrates good recyclability by water treatment. Also, the sensing mechanism is adequately proved by using multiple experimental methods and theoretical calculation. In addition, the -based facile filter paper-constructed test strips are fabricated for real-time and on-spot detection of leaked 2-CEES gas specifically. Therefore, this fluorescent chemosensor with excellent sensing performance greatly advances the practical detection of SM species at room temperature.
本文开发了一种新型蓝色聚集诱导增强发射(AIEE)材料 4--(萘-1-基)-3,5-双(4--苯基-1-萘基氨基)苯基-4-1,2,4-三唑(),并将其用作模拟芥子气(SM)的模拟物 2-氯乙基乙基硫醚(2-CEES)蒸气的荧光化学传感器。该化学传感器是通过在 4-1,2,4-三唑(TAZ)的 3 和 5 位引入供电子的 -苯基-1-萘基胺基团来增强 TAZ 基团的亲核性设计的,萘环连接到 TAZ 基团的 4 位以构建 AIEE 分子。薄膜表现出非凡的稳定性,然后进一步用作可靠且便携的荧光化学传感器。暴露于 2-CEES 蒸气后,化学传感器会立即产生荧光响应(不超过 1 秒)。值得注意的是,该荧光化学传感器在“室温”下实现了从蓝色到绿色的荧光颜色变化的可视化检测,这很少有报道。检测限估计为 0.55ppm,低于 SM 暴露的 AEGL-1(1 分钟内 0.6ppm)安全上限。此外,该化学传感器对 2-CEES 蒸气具有高选择性,优于烷基化剂、芳基卤化物化合物、含硫化合物和神经毒剂模拟物等密切相关的物质。更令人印象深刻的是,该化学传感器通过水处理表现出良好的可回收性。此外,还通过多种实验方法和理论计算充分证明了传感机制。此外,还制备了基于的简便滤纸构建的测试条,用于实时和现场检测特定泄漏的 2-CEES 气体。因此,这种具有出色传感性能的荧光化学传感器极大地推进了室温下 SM 物种的实际检测。