Xu Yimang, Yu Shanshan, Chen Qi, Chen Xuemin, Li Yinan, Yu Xiaoqi, Pu Lin
Key Laboratory of Green Chemistry and Technology, Ministry of Education, College of Chemistry, Sichuan University, Chengdu, 610064, P.R. China.
Department of Chemistry, University of Virginia, McCormick Rd., CharlottesvilleVA, 22904, USA.
Chemistry. 2016 Aug 16;22(34):12061-7. doi: 10.1002/chem.201601540. Epub 2016 Jul 14.
The fluorescent responses of a 1,1'-binaphthol (BINOL)-based trifluoromethyl aryl ketone toward a variety of amines have been studied. The aliphatic 1,2-diamines, especially ethylenediamine, can greatly enhance the fluorescence of this compound, but under the same conditions, other mono- and diamines cause much smaller fluorescent responses. This compound can be used as a fluorescent sensor for the detection of ethylenediamine at concentrations over micromolar levels. UV absorption and NMR spectroscopic methods have been used to study the interactions of the sensor with ethylenediamine. These studies have demonstrated that the trifluoromethyl ketone of the sensor reacts with ethylenediamine much more favorably than with other amines. The hydroxyl groups of the sensor and those of the hemiaminal adducts formed in the presence of the amines are important for the highly selective fluorescent response.
研究了一种基于1,1'-联萘酚(BINOL)的三氟甲基芳基酮对多种胺的荧光响应。脂肪族1,2-二胺,尤其是乙二胺,能极大地增强该化合物的荧光,但在相同条件下,其他单胺和二胺引起的荧光响应要小得多。该化合物可作为荧光传感器用于检测微摩尔浓度以上的乙二胺。已采用紫外吸收和核磁共振光谱方法研究传感器与乙二胺的相互作用。这些研究表明,传感器的三氟甲基酮与乙二胺的反应比与其他胺的反应更有利。传感器的羟基以及在胺存在下形成的半胺醛加合物的羟基对于高选择性荧光响应很重要。