Xue Dandan, Zheng Chunhong, Qu Shengzu, Liao Guanming, Fan Congbin, Liu Gang, Pu Shouzhi
Jiangxi Key Laboratory of Organic Chemistry, Jiangxi Science and Technology Normal University, Nanchang, People's Republic of China.
Luminescence. 2017 Jun;32(4):652-660. doi: 10.1002/bio.3234. Epub 2016 Nov 7.
A diarylethene bearing a triazole-linked rhodamine B unit was synthesized. Its fluorescent emission was significantly enhanced in the presence of protons or Cu due to transformation from the pirocyclic form to open-ring form. The fluorescence was quenched sequentially upon irradiation with 297 nm light based on the intramolecular fluorescence resonance energy transfer mechanism. In an acetonitrile: water binary solvent (1: 1 v/v), the compound showed significant fluorescent enhancement for Cu compared with a wide range of tested metal ions with a fast response and a limit of detection of 2.86 × 10 mol L . Using Cu and UV light as the chemical inputs, and fluorescence intensity at 597 nm as the output, a logic gate was developed at the molecular level. Moreover, the compound can be used with a high accuracy to detect Cu in a natural water sample.
合成了一种带有三唑连接罗丹明B单元的二芳基乙烯。由于从螺环形式转变为开环形式,其荧光发射在质子或铜存在下显著增强。基于分子内荧光共振能量转移机制,在297nm光照射下荧光依次猝灭。在乙腈:水二元溶剂(1:1 v/v)中,与一系列测试金属离子相比,该化合物对铜表现出显著的荧光增强,响应快速,检测限为2.86×10 mol·L 。以铜和紫外光作为化学输入,597nm处的荧光强度作为输出,在分子水平上构建了一个逻辑门。此外,该化合物可用于高精度检测天然水样中的铜。