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Aldehyde group driven aggregation-induced enhanced emission in naphthalimides and its application for ultradetection of hydrazine on multiple platforms

机译:醛基驱动的萘酰亚胺中聚集诱导的增强发射及其在多种平台上肼的超检测中的应用

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摘要

Restriction of intramolecular motion (RIM) of rigid aromatic cores is the most universal mechanism so far that can successfully explain almost all AIE/AIEEgenic systems. By designing two novel naphthalimide derivatives (>NIB and >NIBD), we experimentally demonstrated the effect of a single formyl group that can efficiently transform an aggregation caused quenching (ACQ) system (>NIB) into an AIEEgenic system (>NIBD) by strengthening the RIM process. Besides, the newly designed naphthalimide AIEEgen (>NIBD) accomplished ultrasensitive detection of hydrazine at the parts per trillion level (LOD/81 ppt) in aqueous media with high selectivity and enormous improvement over the existing state of the art. An exceptional sensitivity is also achieved in the vapor phase (LOD/0.003%) using a Whatman paper strip based portable device for simple and cost-effective on-site detection. The detection mechanism involved a reaction-based spontaneous formation of a non-fluorescent hydrazone Schiff base derivative (>NIBDH). The in vitro potentiality of the AIEEgenic probe was also demonstrated in two mammalian cell lines i.e. HeLa (human cervical cancer cell line) and HEK293T (Human embryonic kidney cell line that expresses a mutant version of the SV40 large T antigen). Owing to the highly selective formation of the hydrazone Schiff base complex with hydrazine, >NIBD responds to the existence of hydrazine in both these cell lines without any interference from other biologically rich metal ions and amino acids. These outcomes could initiate a much wider use of formyl group induced condensed state emission and a key hypothesis that could generate newer avenues for ACQ to AIEE transformations for several practical applications including hydrazone Schiff base complexation for probing and manipulating hydrazine biology associated with several metabolic activities.
机译:迄今为止,刚性芳香核的分子内运动(RIM)限制是最普遍的机制,可以成功解释几乎所有AIE / AIEEgenic系统。通过设计两种新颖的萘二甲酰亚胺衍生物(> NIB 和> NIBD ),我们实验证明了单个甲酰基可有效转化聚集引起的猝灭(ACQ)系统(<通过加强RIM过程将AI> strong> NIB )转变为AIEE生成系统(> NIBD )。此外,新设计的萘二甲酰亚胺AIEEgen(> NIBD )在水介质中以百万分之几的水平(LOD / 81 ppt)实现了肼的超灵敏检测,并且具有比现有技术更高的选择性。 。使用基于Whatman纸带的便携式设备,可在气相中获得出色的灵敏度(LOD / 0.003%),从而实现简单,经济高效的现场检测。该检测机制涉及非荧光席夫碱衍生物(> NIBDH )的基于反应的自发形成。在两种哺乳动物细胞系,即HeLa(人宫颈癌细胞系)和HEK293T(表达SV40大T抗原突变体的人类胚胎肾细胞系)的两种哺乳动物细胞系中,也证明了AIEEgenic探针的体外潜力。由于the席夫碱与肼的高选择性形成,> NIBD 对这两种细胞系中肼的存在作出响应,而不受其他生物学上丰富的金属离子和氨基酸的干扰。这些结果可能会引发甲酰基诱导的凝聚态发射的更广泛使用,以及一个关键假说,该假说可能会为从ACQ到AIEE转化的新途径提供新的途径,以用于多种实际应用,包括席夫碱络合技术,用于探测和操纵与几种代谢活动有关的肼生物学。

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