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首页> 外文期刊>Journal of the Brazilian Chemical Society >Synthesis and Photophysical Characterization of Proton Transfer-Based Thiourea Derivatives: Potential Application as Colorimetric Naked-Eye Chemosensor for Fluoride Detection in Solution
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Synthesis and Photophysical Characterization of Proton Transfer-Based Thiourea Derivatives: Potential Application as Colorimetric Naked-Eye Chemosensor for Fluoride Detection in Solution

机译:基于质子转移的硫脲衍生物的合成和光物理表征:在溶液中检测氟的比色裸眼化学传感器的潜在应用

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Two new thiourea derivatives were synthesized through the reaction of photoactive aminohydroxybenzazoles and p -isothiocyanate benzoic acid via nucleophilic addition reaction. The compounds were characterized using high resolution mass spectrometry with eletrospray ionization (HRMS-ESI), Fourier transform infrared (FTIR), 13 C and 1 H nuclear magnetic resonance (NMR) spectroscopies. UV-Vis and steady-state fluorescence in solution were also applied to characterize their photophysical behavior. The compounds present absorption in the ultraviolet region (ca. 300 nm) and fluorescence emission with a large Stokes' shift in the UV-A and green region, with the longer wavelength related to phototautomerism in the excited state (ESIPT). Both compounds were investigated as optical sensors for the detection of anions in solution, presenting a potential application for fluoride ion detection by naked-eye and UV-Vis spectroscopy. The continuous variation method plot gave a 1:1 stoichiometric ratio between the chemosensors and F - for the new formed species. The UV-Vis and 1 H NMR titration experiments reflect the establishment of a hydrogen bond interaction between the thiourea moiety of the chemosensors and fluoride. In addition, the presence of fluoride in solution tailored the fluorescence emission of one compound favoring the ESIPT emission.
机译:通过亲核加成反应使光活性氨基羟基苯并恶唑与对异硫氰酸酯苯甲酸反应,合成了两种新的硫脲衍生物。使用具有电喷雾电离(HRMS-ESI),傅立叶变换红外(FTIR),13 C和1 H核磁共振(NMR)光谱的高分辨率质谱对化合物进行表征。溶液中的UV-Vis和稳态荧光也用于表征其光物理行为。这些化合物在紫外区域(约300 nm)处具有吸收作用,在UV-A和绿色区域中具有较大的斯托克斯位移(Stokes'shift)的荧光发射,而较长的波长与处于激发态的光互变异构有关(ESIPT)。两种化合物均作为用于检测溶液中阴离子的光学传感器进行了研究,为通过肉眼和UV-Vis光谱检测氟离子提供了潜在的应用。连续变化方法图给出了新形成物种的化学传感器与F-之间的化学计量比为1:1。 UV-Vis和1 H NMR滴定实验反映了化学传感器的硫脲部分与氟化物之间氢键相互作用的建立。另外,溶液中氟化物的存在使一种化合物的荧光发射更适合ESIPT发射。

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