Yu Yamin, Duan Qingxia, Zhang Xue, Li Xiwei, Wang Kun, Liu Caiyun, Zhu Baocun
School of Water Conservancy and Environment, Shandong Provincial Engineering Technology Research Center for Ecological Carbon Sink and Capture Utilization, University of Jinan.
Anal Sci. 2019 Nov 10;35(11):1251-1254. doi: 10.2116/analsci.19P232. Epub 2019 Jul 26.
Mercury ions as high toxic pollutants have received wide-spread attention because of their poisonousness, persistence and enrichment. To better understand the distribution of mercury species and supplement more detailed toxicological research, it is necessary to develop some methods for monitoring mercury ions with high sensitivity and selectivity. Therefore, a simple rhodol-based highly selective fluorescent probe, RH-Hg, has been developed for monitoring Hg with thiocarbamate as the recognition receptor. The probe RH-Hg can quantificationally detect mercury ions in aqueous solution assisted by hydrogen peroxide (HO), and it can discriminate Hg through "naked-eye" observation of the color changes from light orange to dark pink. Finally, the practical applications of the probe RH-Hg in the river water further demonstrated that it will be an effective and economical tool for monitoring the distribution of Hg in the environment.
汞离子作为高毒性污染物,因其毒性、持久性和富集性而受到广泛关注。为了更好地了解汞形态的分布并补充更详细的毒理学研究,有必要开发一些具有高灵敏度和选择性的汞离子监测方法。因此,已开发出一种基于若丹明的简单高选择性荧光探针RH-Hg,以硫代氨基甲酸盐作为识别受体来监测汞。探针RH-Hg可在过氧化氢(HO)辅助下对水溶液中的汞离子进行定量检测,并且通过“肉眼”观察从浅橙色到深粉色的颜色变化来鉴别汞。最后,探针RH-Hg在河水中的实际应用进一步证明,它将成为监测环境中汞分布的一种有效且经济的工具。