首页> 外文期刊>Journal of Hazardous Materials >A highly selective pH switchable colorimetric fluorescent rhodamine functionalized azo-phenol derivative for thorium recognition up to nano molar level in semi-aqueous media: Implication towards multiple logic gates
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A highly selective pH switchable colorimetric fluorescent rhodamine functionalized azo-phenol derivative for thorium recognition up to nano molar level in semi-aqueous media: Implication towards multiple logic gates

机译:一种高选择性的pH转换比色荧光若丹明官能化偶氮酚衍生物,用于半水介质中高达纳米摩尔水平的level识别:对多个逻辑门的启示

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摘要

A new rhodamine functionalized Schiff base (3',6'-bis(diethylamino)-2-((Z)-(5-((E)-(1,5-dimethyl-3-oxo-2-phenyl-2,3-dihydro-1H-pyrazol-4-yl)diazenyl)-2,4-dihydroxybenzylidene) amino)spiro [isoindoline-1,9'-xan-then]-3-one (1) has been synthesized and was characterized spectroscopically. The optical properties of the schiff base have been studied using UV-vis and fluorescence spectra. Schiff base 1 displayed a selective behaviour towards Th4+ ions, as evidenced by UV-vis and fluorescence spectra. It shows visible colour change from orangish-yellow to red upon addition of Th4+ ions. A strong new emission band at 586 rim and about 24-fold enhancement in fluorescence intensity was observed upon binding with Th4+ which could be quenched by subsequent addition of oxalate and chromate ions. Probe 1 also acts as a reversible pH sensor in the highly acidic region (pH 4, PKa (=) 2.01) via the photophysical response to pH as well as visible detectable colour change from orangish-yellow to red to pink. The absorbance and emission intensities of 1 diminished in the pH region from 4 to 11.5 and could be recovered by adding acid to adjust the pH 4. Probe 1 exhibited high binding constant (8.595 x 10(6) M-1) and low limit of detection (1.122 x 10(-9)) compared to most previously reported sensors for Th4+ ions. Furthermore, two multiple logic gates i.e. 3 and 5 input, have been constructed.
机译:一种新的若丹明功能化的席夫碱(3',6'-双(二乙基氨基)-2-((Z)-(5-((E)-(1,5-二甲基-3-氧代-2-苯基-2,合成了3-二氢-1H-吡唑-4-基)二氮烯基)-2,4-二羟基苄叉基)氨基]螺[异吲哚啉-1,9'-xan-then] -3-一(1),并进行了光谱表征用紫外可见光谱和荧光光谱研究了席夫碱的光学性质,席夫碱1对Th4 +离子表现出选择性行为,紫外可见光谱和荧光光谱表明,席夫碱的颜色从橙黄色变为黄色。添加Th4 +离子时呈红色;与Th4 +结合后,在586边缘处观察到一个很强的新发射带,荧光强度增强了约24倍,可通过随后添加草酸根和铬酸根离子来淬灭,探针1也可逆。通过对pH的光物理响应以及可见的可检测到的颜色变化(从橙黄色到红色t),在高酸性区域(pH <4,PKa(=)2.01)中的pH传感器粉色。 1的吸收和发射强度在pH范围从4减小到11.5,可以通过添加酸来调节pH <4来恢复。探针1的结合常数高(8.595 x 10(6)M-1),下限低的检测结果(1.122 x 10(-9))与大多数以前报道的Th4 +离子传感器相比。此外,已经构造了两个多个逻辑门,即3和5输入。

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