| Literature DB >> 28723180 |
Wei Gu1, Xueyu Pei1, Yuxiao Cheng2, Cuiling Zhang1, Jidong Zhang2, Yinghan Yan1, Caiping Ding1, Yuezhong Xian1.
Abstract
In this work, a novel ratiometric fluorescence sensor has been constructed for the selective and sensitive detection of Hg2+, which is based on the inner filter effect (IFE) of tetraphenylporphyrin tetrasulfonic acid (TPPS) toward black phosphorus quantum dots (BP QDs). Highly fluorescent BP QDs were successfully synthesized from bulk BP by sonication-assisted solvothermal method via a top-down route. In the presence of Hg2+, the IFE originating from spectral overlap between the excitation of BP QDs and the absorption of TPPS is inhibited and the fluorescence of BP QDs is restored. At the same time, the red fluorescence of TPPS is quenched due to its coordination with Mn2+. These phenomena result from the rapid coordination between Mn2+ and TPPS in the presence of Hg2+, which leads to the dramatic decrease of the absorption of TPPS. On the basis of these findings, we design a ratiometric fluorescence sensor for the detection of Hg2+. The as-constructed sensor reveals a good linear response to Hg2+ ranging from 1 to 60 nM with a detection limit of 0.39 nM. Furthermore, the sensing assay is applicable to detecting Hg2+ in real samples.Entities:
Keywords: black phosphorus quantum dots; fluorescence; inner filter effect; mercury ion; ratiometric
Year: 2017 PMID: 28723180 DOI: 10.1021/acssensors.7b00102
Source DB: PubMed Journal: ACS Sens ISSN: 2379-3694 Impact factor: 7.711