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A colorimetric and fluorometric investigation of Cu(ii) ion in aqueous medium with a fluorescein-based chemosensor

机译:荧光素化学传感器水性介质中Cu(II)离子的比色和荧光测定研究

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摘要

As a selective colorimetric and fluorometric chemosensor, a novel fluorescein-based Schiff base (FNSB), 1,4-bis(1-fluorescein)-2,3-diaza-1,3-butadiene ( L , 3 ) exhibits efficient binding for Cu ~(2+) ion in water and allows naked-eye detection as a result of the formation of a 1?:?1 copper–ligand complex. The complexations of Cu ~(2+) ion due to molecular interaction with 3 resulted in a rapid change in color from colorless to deep yellow with a characteristic change in the UV-vis absorption to a longer wavelength by 130 nm in acetonitrile and significant quenching of the fluorescence intensity (~2.5 fold for Cu ~(2+) ion) with maxima at 519 nm in 1% DMSO–Tris buffer solution at physiological pH (7.4). The detection limit of Cu ~(2+) ion in acetonitrile is found to be 20 μM by UV spectroscopy, whereas in aqueous solution, the limit is reduced to 1.25 μM by fluorescence spectroscopy.
机译:作为一种选择性色谱和荧光化疗传感器,一种新型荧光素的席夫碱(FNSB),1,4-双(1-荧光素)-2,3-Diaza-1,3-丁二烯(L,3)表现出有效的结合在水中Cu〜(2+)离子,允许裸眼检测作为形成1的形成,α:1铜 - 配体络合物。 Cu〜(2+)离子由于分子相互作用与3的络合导致从无色到深黄色的颜色的快速变化,在乙腈和显着的淬火中,UV-Vis吸收到较长波长的特征变化。在1%DMSO-TRIS缓冲溶液(7.4)的1%DMSO-TRIS缓冲溶液中,在519nm处,Maxima的荧光强度(Cu〜(2+)离子的〜2.5倍)。通过UV光谱法发现乙腈中Cu〜(2+)离子的检测限为20μm,而在水溶液中,通过荧光光谱,限制将极限降低至1.25μm。

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