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Spectrochim Acta A Mol Biomol Spectrosc ; 248: 119252, 2021 Mar 05.
Article in English | MEDLINE | ID: mdl-33316655

ABSTRACT

A key issue for constructing optical and redox-active receptors is how to conjugate a specific sensing kernel with a multi-signal-responsive system to carry out multi-feature analysis. Mercury is considered to be highly toxic to human health and ecological security. In this work, we present a novel near-infrared optical and redox-active receptor that can sense Hg2+ at ppb level in aqueous media via multi-model monitors with a low detection limit of 8.4 × 10-9 M (1.68 ppb). This receptor features a visible detection, 'off-on' fluorescence response, and efficient electrochemistry assessment, as well as pH-insensitivity to Hg2+ with high sensitivity. In view of its marked near-infrared emission and fluorescence enhancement, we successfully applied this receptor to visualize Hg2+ in live cells. Furthermore, a possible sensing model was established and rationalized with theoretical studies.


Subject(s)
Mercury , Water , Fluorescence , Fluorescent Dyes , Humans , Oxidation-Reduction , Rhodamines
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