Iyoshi Shohei, Taki Masayasu, Yamamoto Yukio
Graduate School of Human & Environmental Studies, Kyoto University, Yoshida, Sakyo-ku, Kyoto 606-8501, Japan.
Inorg Chem. 2008 May 19;47(10):3946-8. doi: 10.1021/ic800442y. Epub 2008 Apr 24.
The synthesis and photophysical properties of a rosamine-based fluorescent chemosensor, RosAg, for detecting Ag ion in an aqueous solution are described. This fluorescent sensor has a negligible quantum yield (<0.005) in the absence of Ag(+), whereas a significant increase in fluorescence is observed upon complexation with Ag(+) under physiological conditions. The crystal structure of the silver complex with the chelator moiety of RosAg reveals a trigonal-planar coordination geometry in which three S atoms occupy the metal center. Although a strong coordinative interaction of Ag-N is not observed in the crystal structure, the (1)H NMR experiments suggest that aniline nitrogen is likely to be associated with the Ag(+) center in the solution state. This may inhibit the photoinduced electron transfer process and result in the enhancement of fluorescence.
描述了一种基于玫瑰胺的荧光化学传感器RosAg在水溶液中检测银离子的合成及光物理性质。该荧光传感器在不存在Ag(+)时量子产率可忽略不计(<0.005),而在生理条件下与Ag(+)络合时荧光显著增强。RosAg螯合部分的银配合物晶体结构显示出三角平面配位几何结构,其中三个硫原子占据金属中心。虽然在晶体结构中未观察到Ag-N的强配位相互作用,但(1)H NMR实验表明,苯胺氮在溶液状态下可能与Ag(+)中心相关联。这可能抑制光诱导电子转移过程并导致荧光增强。