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'Test kit' of chromogenic and ratiometric 1,10-phenanthroline based chemosensor for the recognition of F- and CN- ions

机译:基于发色谱和比率的1,10-菲碱基化学传感器的“测试试剂盒”,用于识别F-和CNIENT

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摘要

A simple, novel colorimetric and absorption ratiometric chemosensor 1 based on 1, 10-phenanthroline and naphthalene platforms has been synthesized and demonstrated. The photophysical response of chemosensor 1 was investigated by colorimetric, UV-vis and H-1 NMR titration method. 1 behaved as colorimetric sensor for F- and CN- and exhibited naked eye-detectable color changes based on hydrogen bonding interactions followed by deprotonation. Moreover, 1 displayed an absorption ratiometric response for both F- and CN- ions (1:1 complex) in the recognition event. The recognition mechanism has been supported by DFT computational calculations and H-1 NMR studies. Significantly, the detection limits of chemosensor 1 towards F- and CN- have been evaluated to be 2.8 x 10(-7) M and 5.8 x 10(-7) M, which are lower than the maximum values of F- (1.5 mg/L) and CN- (1.9 mu M) ions permitted by WHO. Chemosensor 1 can be conveniently and effectively used as test kit for sensing of fluoride and cyanide ions in the solid state without any additional equipment. The color change was more intense for F- ions in comparison to CN- ions both in the solution and solid state which well corroborated to the higher binding constant and lower limit of detection value of F- ion.
机译:基于1,10-菲咯啉和萘平台的简单,新的比色和吸收比例化学传感器1已经合成和证明。通过比色,UV-Vis和H-1 NMR滴定法研究了化学传感器1的光物理响应。 1表现为比色传感器为F-和CN-,并基于氢键相互作用随后进行去质子化而表现出肉眼可检测的颜色变化。此外,在识别事件中,1显示了F-和CNIEN(1:1复合物)的吸收比率响应。 DFT计算计算和H-1 NMR研究支持识别机制。显着地,化学传感器1朝向F-和CN的检测限为2.8×10(-7)m和5.8×10(-7)m,其低于F-(1.5mg)的最大值/ l)和允许世卫组织允许的CN-(1.9亩)离子。 Chemososor 1可以方便,有效地用作测试试剂盒,用于在没有任何额外设备的情况下以固态的氟化物和氰化物离子感测。与溶液和固态中的CNIENION相比,颜色变化更强烈地对FN-离子进行良好的溶液和固态,其良好地被证实到F离子检测值的较高结合常数和下限。

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