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Data on a real-time tripodal colorimetric/fluorescence sensor for multiple target metal ions

机译:用于多个目标金属离子的实时三脚架比色/荧光传感器上的数据

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摘要

Currently considerable research both in life and in environmental sciences is dedicated to chemosensors able to detect metals of biological interest such as zinc and iron or other toxic and carcinogenic, as cadmium, mercury, chromium, lead. Recently, a new chemosensor strategy of “single chemosensor for multiple metals” has emerged. For this scope, many fluorescent sensors for Cd(II) and Zn(II) have been designed and synthetized, as ligand systems or in polymeric matrices , , . The data presented in this article include experimental data on the of a pyridyl/phenolic/benzothiazole functionalized colorimetric receptor (>BPAP) and its selectively recognise Fe(III) and Fe(II) ions with visible, naked eye colour changes and fluorometric selectivity towards Zn2+ and Cd2+ ions in aqueous medium.This article is submitted as a companion paper to Caruso et al. (2018) .
机译:当前,在生命和环境科学领域都进行了大量研究,致力于能够检测具有生物学意义的金属(例如锌和铁)或其他有毒和致癌性的金属(例如镉,汞,铬,铅)的化学传感器。最近,出现了一种新的化学传感器策略,即“多种金属的单一化学传感器”。为此,已经设计并合成了许多用于Cd(II)和Zn(II)的荧光传感器,它们是作为配体系统或在聚合物基体中合成的。本文提供的数据包括有关吡啶基/酚基/苯并噻唑官能化比色受体(> BPAP )的实验数据,其可以用肉眼可见地选择性识别Fe(III)和Fe(II)离子在水介质中对Zn 2 + 和Cd 2 + 离子的颜色变化和荧光选择性。本文作为辅助论文提交给Caruso等人。 (2018)。

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