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Searching for New Luminescent Chemosensors for Metal Ions

机译:寻找金属离子的新发光化学传感器

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Aiming to develop new fluorescent chemosensors for biological and environmental applications, we have designed and synthesized new chemical species able to reversibly bind alkali, earth-alkali, and transition metal ions. For signaling the binding of the target analyte, we have inserted in the structure of the chemosensors different luminophores, such as dioxyxanthone derivatives, dansyl derivatives, ruthenium complexes, and hydroxyquinoline derivatives. In solution, the binding is always signaled by pronounced changes in the photophysical properties of the inserted luminophore such as emission wavelength and intensity, and excited state lifetime. The mechanism for the signal transduction strongly depends on the chosen receptor and luminophore moieties, and has been investigated in detail by means of steady state and time resolved spectroscopy. In all cases, the synthesized chemosensors have proved to be chemically and photochemically stable. Good selectivity and affinity has been obtained with different sensors for K{sup}+, Mg{sup}(2+), Ba{sup}(2+), Zn{sup}(2+), Ni{sup}(2+) and Cu{sup}(2+), even in physiological pH conditions. Moreover the use of an array of these sensors in optodes could lead to the construction of the so called electronic tongues. All these features make these sensors promising candidates for analytical applications.
机译:旨在为生物和环境应用开发新的荧光化学传感器,我们设计并合成了能够可逆地结合碱,地球碱和过渡金属离子的新化学物质。为了指导目标分析物的结合,我们已插入化学传感器的不同发光体的结构中,例如二氧杂环酮衍生物,丹甘基衍生物,钌配合物和羟基喹啉衍生物。在溶液中,始终通过插入发光电泳的光学性质的明显变化始终通过发射的发光和强度和激发态寿命来发出结合。信号转导的机制强烈取决于所选择的受体和发光部分,并通过稳态和时间分辨光谱进行详细研究。在所有情况下,已证明合成的化学传感器在化学上和光明上稳定。良好的选择性和亲和力已经获得具有不同的传感器对于K {SUP} +,Mg的{} SUP(2+),钡{SUP}(2+),锌{SUP}(2+),镍{SUP}(2- +)和Cu {sup}(2+),即使在生理pH条件下。此外,在光学中使用这些传感器的阵列可能导致所谓的电子舌的结构。所有这些功能使这些传感器具有有希望的分析应用的候选者。

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