Mercury ion (Hg2+) is a ubiquitous heavy metal pollutant that poses health risks through its environmental transport and accumulation in living organisms. To address this, we designed and constructed a chemically reactive probe, BTS, capable of sensitively and selectively detecting Hg2+. The probe displayed excellent analytical performance, including high selectivity, a fast response time (120 s), and a low detection limit (3.9 nM). Mechanistic studies, utilizing 1H NMR titration, HPLC, and HRMS, confirmed that, upon Hg2+ binding, the dithiane group of the probe is specifically transformed into an aldehyde moiety. BTS was successfully employed to detect Hg2+ in tap water, soil, fish, and shrimp samples, validating its practical utility. Additionally, BTS-based test strips offered a convenient method for visual Hg2+ detection under UV light, and the probe proved effective for fluorescence imaging in living cells. This research concept provides valuable insights into the investigation of the environmental behavior of heavy metal ions.
Jiao et al. (Fri,) studied this question.