| Literature DB >> 26545355 |
Chao-rui Li1, Jing-can Qin1, Bao-dui Wang1, Long Fan1, Jun Yan1, Zheng-yin Yang2.
Abstract
In this study, a novel chromone-derived Schiff-base ligand called 6-Hydroxy-3-formylchromone (2'-furan formyl) hydrazone (HCFH) has been designed and synthesized as a "turn on" fluorescent sensor for Al(3+). This sensor HCFH showed high selectivity and sensitivity towards Al(3+) over other metal ions investigated, and most metal ions had nearly no influences on the fluorescence response of HCFH to Al(3+). Additionally, the significant enhancement by about 171-fold in fluorescence emission intensity at 502 nm was observed in the presence of Al(3+) in ethanol, and it was due to the chelation-enhanced fluorescence (CHEF) effect upon complexation of HCFH with Al(3+) which inhibited the photoinduced electron transfer (PET) phenomenon from the Schiff-base nitrogen atom to chromone group. Moreover, this sensor formed a 1 : 1 complex with Al(3+) and the fluorescence response of HCFH to Al(3+) was nearly completed within 1 min. Thus, this sensor HCFH could be used to detect and recognize Al(3+) for real-time detection.Entities:
Keywords: Aluminum ion; Chef; Chromone; Fluorescent sensor; PET; Real-time detection
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Year: 2015 PMID: 26545355 DOI: 10.1007/s10895-015-1720-0
Source DB: PubMed Journal: J Fluoresc ISSN: 1053-0509 Impact factor: 2.217