Shyamal Milan, Mazumdar Prativa, Maity Samir, Sahoo Gobinda P, Salgado-Morán Guillermo, Misra Ajay
Department of Chemistry and Chemical Technology, Vidyasagar University , Midnapur 721102, W.B India.
Departamento de Ciencias Qumıcas, Facultad de Ciencias Exactas, Universidad Andres Bello, Sede Concepcion , Concepcion, Chile.
J Phys Chem A. 2016 Jan 21;120(2):210-20. doi: 10.1021/acs.jpca.5b09107. Epub 2016 Jan 6.
A pyrene based fluorescent probe, 3-methoxy-2-((pyren-2yl-imino)methyl)phenol (HL), was synthesized via simple one-pot reaction from inexpensive reagents. It exhibited high sensitivity and selectivity toward Al(3+) over other relevant metal ions and also displayed novel aggregation-induced emission enhancement (AIEE) characteristics in its aggregate/solid state. When bound with Al(3+) in 1:1 mode, a significant fluorescence enhancement with a turn-on ratio of over ∼200-fold was triggered via chelation-enhanced fluorescence through sensor complex (Al-L) formation, and amusingly excess addition of Al(3+), dramatic enhancement of fluorescence intensity over manifold through aggregate formation was observed. The 1:1 stoichiometry of the sensor complex (Al-L) was calculated from Job's plot based on UV-vis absorption titration. In addition, the binding site of sensor complex (Al-L) was well-established from the (1)H NMR titrations and also supported by the fluorescence reversibility by adding Al(3+) and EDTA sequentially. Intriguingly, the AIEE properties of HL may improve its impact and studied in CH3CN-H2O mixtures at high water content. To gain insight into the AIEE mechanism of the HL, the size and growth process of particles in different volume percentage of water and acetonitrile mixture were studied using time-resolved photoluminescence, dynamic light scattering, optical microscope, and scanning electron microscope. The molecules of HL are aggregated into ordered one-dimensional rod-shaped microcrystals that show obvious optical waveguide effect.
一种基于芘的荧光探针,3-甲氧基-2-((芘-2-基亚氨基)甲基)苯酚(HL),由廉价试剂通过简单的一锅法反应合成。它对Al(3+)表现出高于其他相关金属离子的高灵敏度和选择性,并且在其聚集/固态中还表现出新型的聚集诱导发光增强(AIEE)特性。当以1:1模式与Al(3+)结合时,通过形成传感器配合物(Al-L)的螯合增强荧光触发了显著的荧光增强,开启比超过约200倍,有趣的是,过量添加Al(3+)时,通过聚集形成观察到荧光强度在多个数量级上急剧增强。传感器配合物(Al-L)的1:1化学计量比通过基于紫外可见吸收滴定的Job曲线计算得出。此外,通过(1)H NMR滴定很好地确定了传感器配合物(Al-L)的结合位点,并且通过依次添加Al(3+)和EDTA的荧光可逆性得到了支持。有趣的是,HL的AIEE性质可能会改善其影响,并在高含水量的CH3CN-H2O混合物中进行了研究。为了深入了解HL的AIEE机制,使用时间分辨光致发光、动态光散射、光学显微镜和扫描电子显微镜研究了不同体积百分比的水和乙腈混合物中颗粒的尺寸和生长过程。HL分子聚集形成有序的一维棒状微晶,显示出明显的光波导效应。