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Hyperbranched copolymer based photoluminescent vesicular probe conjugated with tetraphenylethene: Synthesis, aggregation-induced emission and explosive detection
Journal of Molecular Liquids ( IF 6 ) Pub Date : 2020-04-01 , DOI: 10.1016/j.molliq.2020.113034
Faran Nabeel , Tahir Rasheed , Muhammad Farhan Mahmood , Salah Ud-Din Khan

A carboxyl functionalized hyperbranched polymer, poly(3-ethyl-3-oxetanemethanol)-star-poly(ethylene oxide) (HSP-COOH) was subjected to addition reaction with tetraphenylethene (TPE) containing thioethanol (i.e. 2-((4-(1,2,2 triphenylvinyl)phenethyl)thio)ethanol (TPE-OH) to afford HSP-TPE copolymer with high yields. The TPE grafted hyperbranched copolymer forms homogeneous solution in common organic solvents such as THF. In aqueous solution, the copolymer self-assemble to form aggregates. The aggregates display maximum photoluminescence (PL) in THF/water (3:7 v/v) mixture. The introduction of TPE units into polymer makes it highly sensitive probe for picric acid (PA) with detection limit as low as 20 ppb via aggregation induced emission. The PL was effectively quenched by possible π-π interactions between TPE units of HSP-TPE and hydroxyl containing phenolic acid. The quenching efficiency significantly increased nonlinearly at higher quencher concentration. The present study offers details for design and synthesis of new hyperbranched polymeric fluorescent vesicle probe with high sensitivity.



中文翻译:

与四苯乙烯共轭的基于超支化共聚物的光致发光囊泡探针:合成,聚集诱导的发射和爆炸物检测

羧基官能化的超支化聚合物,聚(3-乙基-3-氧杂环丁烷甲醇)-在较高的淬灭剂浓度下,淬灭效率显着地非线性增加。本研究为高灵敏度的新型超支化聚合物荧光囊泡探针的设计和合成提供了详细信息。

更新日期:2020-04-03
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