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Updated: Mar 31, 2026

A Polyaniline-based Sensor of Nucleic Acids
Published on: November 1, 2016
A turn-on AIE sensor for nanomolar detection of perrhenate in aqueous media
Yan-Ni Li1, Yan-Xin Du1, Hao Liu1
1School of Food Science and Engineering, National Research and Development Center for Goat Dairy Products Processing Technology, Shaanxi University of Science and Technology Xi'an Shaanxi 710021 China xuqinfeng@sust.edu.cn.
Abstract:
The "light-switch" Ru(ii) polypyridine complexes have been developed as a novel fluorescent sensor for rapid and sensitive detection of ReO4 - anions in pure aqueous media. When counterions (Cl-) in aqueous solution are specifically exchanged by ReO4 - anions, the "light-switch" Ru(ii) polypyridine complexes exhibit a significant fluorescence emission enhancement, accompanied by the formation of nanoaggregates. This aggregation is driven by weak interactions with electrostatic attraction, anion⋯π, C-H⋯anion hydrogen bonding and π-π stacking interactions between ReO4 - anions and "light-switch" Ru(ii) polypyridine complexes, which is confirmed by single crystal structure analysis, density functional theory (DFT) and Energy decomposition analysis (EDA). The anion exchange-induced aggregation effect of the Ru(ii) polypyridine complexes demonstrate a potent "light-switch" strategy, capable of rapid response to ReO4 - within 1 s and a limit of quantification of 1.5 nM, below the WHO guideline value for its radioactive analogue 99TcO4 - (1.6 nM), demonstrating potential for monitoring pertechnetate contamination. This work opens a new way for future research based on "light-switch" Ru(ii) polypyridine complexes as turn-on fluorescent sensing probes for ReO4 -/99TcO4 - anions detection in aqueous media.

