首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Acid Environment-improved fluorescence sensing performance: A quinoline Schiff base-containing sensor for Cd2+ with high sensitivity and selectivity
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Acid Environment-improved fluorescence sensing performance: A quinoline Schiff base-containing sensor for Cd2+ with high sensitivity and selectivity

机译:酸性环境改善的荧光传感性能:含喹啉席石英底座的传感器,用于CD2 +,灵敏度高,选择性高

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摘要

The development of acid environment-applicable fluorescence sensor is challenging but attractive topic, which can achieve the rapid and comprehensive evaluation of total soluble heavy metal content in natural water. In this work, a quinoline-containing Schiff base, AMQD, was utilized as fluorescence probe for Cd2+. Interestingly, the obtained chemosensor exhibited much better fluorescence detection sensitivity and selectivity toward Cd2+ in acidic 10% methanol aqueous solution (pH 4) comparing to those in neutral environment. Initially, the fluorescence emission of AMQD was almost invisible with the absence of metal ions, while a significant turn-on fluorescence response (similar to 425 nm) can be observed with the addition of Cd2+. The fluorescence detection possesses excellent selectivity without the interference of any other metal cation. The recognition ratio between the fluorescence sensor AMQD and Cd2+ was confirmed to be 1:1, and the detection limit was calculated to be 2.4 nM.
机译:酸性环境适用的荧光传感器的开发是挑战但有吸引力的主题,可以实现自然水中可溶性重金属含量的快速和综合评价。 在这项工作中,含喹啉的席夫碱,AMQD用作CD2 +的荧光探针。 有趣的是,所获得的化学传感器表现出更好的荧光检测敏感性和对CD2 +在酸性10%甲醇水溶液(pH4)中的选择性与中性环境相比。 最初,AMQD的荧光发射几乎看不见,没有金属离子,而可以通过添加CD2 +观察到显着的开启荧光响应(类似于425nm)。 荧光检测具有优异的选择性,而不会干涉任何其他金属阳离子。 荧光传感器AMQD和CD2 +之间的识别比率为1:1,并且检测极限计算为2.4nm。

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