Selective and Sensitive Fluorescent Turn-On Switch for Arsenic(III) Monitoring in Rice by a Nitrogen-Rich
Yong Liu1, Dan Mu1, Yanxin Yu1
1College of Chemistry, Chemical Engineering and Materials Science, Zaozhuang University, Zaozhuang 277160, China.
Abstract:
Inorganic As(III), the major form of pollutant of arsenic contamination, tends to accumulate easily in rice, causing serious global health risks. Therefore, it is highly desirable to seek credible methods to achieve efficient management of As3+ that can conduct selective and sensitive monitoring. Herein, this work presents a rational design of a covalent organic framework (COF)-based turn-on fluorescent-sensing platform to detect As3+. The design concept is proven via framing nitrogen-rich functionalized COF material, Dpy-DhBt: these nitrogen-based sites are highly selective As3+ receptors, and the π-connection skeleton is a signal responder. Once As3+ is introduced to coordinate with Dpy-DhBt, significant fluorescence turn-on emerged with a clear color change via hindering the photoinduced electron transfer (PET) process. As a sensing platform, the remarkable exhibition of Dpy-DhBt was acquired in facile visualization, favorable sensibility, and real-time answer. The exceptional surface area and porous structure of Dpy-DhBt facilitate superior interaction with As3+, which contributes to an ultrafast response time of 10 s. For As3+ monitoring, Dpy-DhBt achieved an ultrasensitive detection limit of 7.5 nM. More attractively, Dpy-DhBt has also been prosperously employed to detect As3+ in actual rice samples in satisfying recovery. This work reveals great prospects of fluorescent COF for detection of As3+ and provides new insights into the research of toxic metal detection in food samples with the easy framing of novel COF materials via clever introduction of chelating sites.


