首页> 外文OA文献 >A unique NH-spacer for N-benzamidothiourea based anion sensors. Substituent effect on anion sensing of the ICT dual fluorescent N-(p-dimethylaminobenzamido)-N '-arylthioureas
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A unique NH-spacer for N-benzamidothiourea based anion sensors. Substituent effect on anion sensing of the ICT dual fluorescent N-(p-dimethylaminobenzamido)-N '-arylthioureas

机译:用于基于N-苯甲酰胺硫脲的阴离子传感器的独特NH-间隔基。 ICT双荧光N-(对二甲基氨基苯甲酰胺基)-N'-芳基硫脲对阴离子感测的取代作用

摘要

A series of N-(p-dimethylaminobenzamido)-N'-(substituted-phenyl)thioureas (substituent = p-CH3, H, p-Cl, p-Br, m-Br, m-NO2, and p-NO2) were designed as anion sensors in order to better understand the -NH-spacer via a substituent effect investigation. In these molecules the dual fluorescent intramolecular charge transfer (ICT) fluorophore p-dimethylaminobenzamide as the signal reporter was linked to the anion-binding site, the thiourea moiety, via an N-N single bond. Correlation of the NMR signals of the aromatic and -NH protons with substituents in these molecules indicated that the N-N single bond stopped the ground-state electronic communication between the signal reporter and the anion-binding site. Dual fluorescence was observed in highly polar solvents such as acetonitrile with the former five derivatives. The fact that the CT emission wavelength and the CT to LE emission intensity ratio of the sensors were independent of the substituent existing in the anion-binding moiety suggested that the substituent electronic effect could not be communicated to the CT fluorophore in the excited-state either. Yet in acetonitrile both the CT dual fluorescence and the absorption of the sensors were found to be highly sensitive toward anions. A conformation change around the N-N bond in the sensor molecules was suggested to occur upon anion binding that established the electronic communication between the signal reporter and the anion-binding site. The anion binding constants of the N-(p-dimethylaminobenzamido)thiourea sensors were found higher than those of the corresponding traditional N-phenylthiourea counterparts and the substituent effect on the anion binding constant was much higher than that in the latter. "-NH-" was shown to be a unique spacer that affords N-benzamidothiourea allosteric anion sensors.
机译:一系列N-(对二甲基氨基苯甲酰胺基)-N'-(取代苯基)硫脲(取代基=对-CH3,H,对-Cl,对-Br,间-Br,间-NO2和对-NO2)被设计为阴离子传感器,以便通过取代基效应研究更好地了解-NH-间隔子。在这些分子中,作为信号报告物的双荧光分子内电荷转移(ICT)荧光团对二甲基氨基苯甲酰胺通过N-N单键与阴离子结合位点硫脲部分相连。这些分子中的芳族和-NH质子的NMR信号与取代基的相关性表明,N-N单键终止了信号报告子与阴离子结合位点之间的基态电子通信。在高极性溶剂(如乙腈)和前五种衍生物中观察到双重荧光。传感器的CT发射波长和CT与LE发射强度之比与阴离子结合部分中存在的取代基无关,这一事实表明,在激发态下,取代基的电子效应也无法传达给CT荧光团。 。然而,在乙腈中,CT双荧光和传感器的吸收均被发现对阴离子高度敏感。建议在阴离子结合时在传感器分子中N-N键周围发生构象变化,从而在信号报告基因和阴离子结合位点之间建立电子连通。发现N-(对-二甲基氨基苯甲酰胺基)硫脲传感器的阴离子结合常数高于相应的传统N-苯基硫脲对应物的阴离子结合常数,并且取代基对阴离子结合常数的作用远高于后者。已显示“ -NH-”是提供N-苯甲酰胺硫脲变构阴离子传感器的独特间隔基。

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