A highly selective "turn-on" water-soluble fluorescent sensor for gallium ion detection.
Pengfei WangFanda MengHao SuLijie LiuMaroof Ahmad KhanHui LiPublished in: RSC advances (2021)
In this work, a novel sensor, ( E )- N '-(3-( tert -butyl)-2-hydroxybenzylidene)thiophene-2-carbohydrazide (1), based on salicylaldehyde and thiophene hydrazide moieties was designed and synthesized. The single-crystal structure of 1 was achieved and studied for understanding its functional properties. The interaction and recognition abilities of 1 with different metal ions were investigated. Sensor 1 showed excellent "turn-on" fluorescence with highly selective and specific recognition ability in the presence of gallium ions (Ga 3+ ) in an aqueous solution. The sensing behavior of 1 with Ga 3+ was also studied by photophysical experiments, ESI-MS analysis, and 1 H NMR titration. The limit of detection (LOD) and limit of quantification (LOQ) of 1 for the detection of Ga 3+ in an aqueous solution were calculated as 58 nM, and 192 nM, respectively. DFT calculations were carried out to optimize the configuration of 1 and 1-Ga 3+ complexes and rationalize the photophysical experimental data. Highly selective test strips based on sensor 1 were developed for Ga 3+ detection. Sensor 1 was also used to detect Ga 3+ in actual water samples, and a considerable recovery rate was obtained.
Keyphrases
- pet ct
- aqueous solution
- water soluble
- label free
- loop mediated isothermal amplification
- real time pcr
- ms ms
- quantum dots
- living cells
- sensitive detection
- density functional theory
- mass spectrometry
- fluorescent probe
- single molecule
- big data
- molecular dynamics simulations
- artificial intelligence
- deep learning
- data analysis