| Literature DB >> 35932385 |
Liangtao Mao1, Xiumei Li1, Haichang Ding1, Congbin Fan1, Gang Liu2, Shouzhi Pu3,4.
Abstract
A novel diarylethene-based fluorescent chemosensor containing a quinoline unit (1o) had been designed and synthesized. 1o showed good photochromic ability and fluorescence switching properties by alternating UV/vis light irradiation. The chemosensor showed high "Turn-off" fluorescent selectivity for Hg2+ by competitive tests of the fluorescence reaction in the presence other ions in acetonitrile solution. The stoichiometry between the compound 1o and Hg2+ was 1:1 by Job's plot curve and HRMS analysis. In addition, the LOD for Hg2+ was calculated as 60 nM. The fluorescence emission can be back to the "Turn-on" state by adding EDTA. Based on these facts, a molecular logic gate that including four input signals (UV/vis and Hg2+/EDTA) and one output signal (fluorescent intensity at 491 nm) was designed.Entities:
Keywords: Diarylethene; Fluorescent chemosensor; Hg2+ detection; Logic circuit
Year: 2022 PMID: 35932385 DOI: 10.1007/s10895-022-02930-5
Source DB: PubMed Journal: J Fluoresc ISSN: 1053-0509 Impact factor: 2.525