Environmental pollution problem, especially mercury ions (Hg2+) pollution, seriously threatens the organism health. Numerous researches have revealed that even extremely low concentration of Hg2+ can severely damage the organisms. Therefore, it is essential for real-time detection of Hg2+. Fluorescent probe technology with great advantages has become the preferred technique for environmental detection and in vivo analysis of Hg2+. In recent years, lots of contributions have been committed to designing and synthesizing novel fluorescent probes for environmental pollutant Hg2+ analysis. In this feature article, we review the recent advances in fluorescent probes for Hg2+ analysis, focusing on probe response modes, including signal-decreased f...
Fluorescent probes have been proved to be very valuable tools in chemical and biological application...
A highly sensitive fluorescent probe based on BODIPY and hydrazine for Hg2+ was designed and synthes...
Metal-enhanced fluorescence (MEF) is a powerful tool in the design of sensitive chemical sensors by ...
Environmental pollution problem, especially mercury ions (Hg2+) pollution, seriously threatens the o...
Development of new fluorescent probes for mercury ion analysis in environmental or living organism i...
Development of new fluorescent probes for mercury ion analysis in environmental or living organism i...
The harmful impact of mercury on biological systems is of great concern. Regardless of the efforts m...
Mercury ions are crucially harmful to ecosystem and human being due to their characters of bioaccumu...
Mercury ions are crucially harmful to ecosystem and human being due to their characters of bioaccumu...
Detection of heavy metals is of great importance for food safety and environmental analysis. Among v...
DoctorSection I. “Turn-on” fluorescent probes for mercury and methylmercury Species Mercury is...
A new ultrasensitive ratiometric fluorescent probe for the monitoring of mercury ions via specific m...
Mercury (Hg) and its derivatives pose a serious threat to the environment and human health because o...
In the present study, a dual recognition strategy for ultrasensitive detection of Hg2+ was successfu...
In the present study, a dual recognition strategy for ultrasensitive detection of Hg2+ was successfu...
Fluorescent probes have been proved to be very valuable tools in chemical and biological application...
A highly sensitive fluorescent probe based on BODIPY and hydrazine for Hg2+ was designed and synthes...
Metal-enhanced fluorescence (MEF) is a powerful tool in the design of sensitive chemical sensors by ...
Environmental pollution problem, especially mercury ions (Hg2+) pollution, seriously threatens the o...
Development of new fluorescent probes for mercury ion analysis in environmental or living organism i...
Development of new fluorescent probes for mercury ion analysis in environmental or living organism i...
The harmful impact of mercury on biological systems is of great concern. Regardless of the efforts m...
Mercury ions are crucially harmful to ecosystem and human being due to their characters of bioaccumu...
Mercury ions are crucially harmful to ecosystem and human being due to their characters of bioaccumu...
Detection of heavy metals is of great importance for food safety and environmental analysis. Among v...
DoctorSection I. “Turn-on” fluorescent probes for mercury and methylmercury Species Mercury is...
A new ultrasensitive ratiometric fluorescent probe for the monitoring of mercury ions via specific m...
Mercury (Hg) and its derivatives pose a serious threat to the environment and human health because o...
In the present study, a dual recognition strategy for ultrasensitive detection of Hg2+ was successfu...
In the present study, a dual recognition strategy for ultrasensitive detection of Hg2+ was successfu...
Fluorescent probes have been proved to be very valuable tools in chemical and biological application...
A highly sensitive fluorescent probe based on BODIPY and hydrazine for Hg2+ was designed and synthes...
Metal-enhanced fluorescence (MEF) is a powerful tool in the design of sensitive chemical sensors by ...