As one of the most toxic heavy metals, mercury ion (Hg2+) has become a concern focus for its severe threats to environment and human health. As a result, it is of great importance to develop novel methods to realize the recognition and quantification of Hg2+. The past decades witness the development of nanomaterial-based optical sensors for Hg2+ detection, showing the benefits of simplicity, rapidity, high sensitivity and selectivity, and cost-effectiveness. The reported methods have allowed the detectability down to nanomolar concentrations or much lower levels, and proved their practical applications for detecting and quantifying Hg2+, in synthetic solutions or natural water samples. In this review, we summarize the published innovations ...
Precisely probing heavy metal ions in water is important for molecular biology, environmental protec...
Development of selective colorimetric detectors that can use green-fabricated silver nanoparticles’ ...
An on-field colorimetric sensing strategy employing gold nanoparticles (AuNPs) and a paper-based ana...
The exceptional and specific reactivity of mercury ions (Hg2+) toward plasmonic silver nanoparticles...
The exceptional and specific reactivity of mercury ions (Hg2+) toward plasmonic silver nanoparticles...
The exceptional and specific reactivity of mercury ions (Hg2+) toward plasmonic silver nanoparticles...
Rapid industrial progress has led to the elevation of heavy metal concentration in the environment...
A sensitive and selective Hg2+ optical sensor has been developed based on the redox interaction of H...
A sensitive and selective colorimetric detection method for mercury(II) has been well-estabilished i...
Facile unmodified silver nanoparticles (AgNPs) as colorimetric sensor for determination of Hg(II) io...
Concerns over exposure to mercury have motivated the exploration of cost-effective, rapid, and relia...
A simple colorimetric approach for mercury ion (Hg2+) sensing was developed that was based on the Hg...
The continuously increasing flow of toxic heavy metals to the environment due to intensive industria...
The emission of mercury (II) from coal combustion and other industrial processes may have impacts on...
Mercury (Hg) is a potent neurotoxin in fish, wildlife, and humans. The detection of Hg(II) ions in w...
Precisely probing heavy metal ions in water is important for molecular biology, environmental protec...
Development of selective colorimetric detectors that can use green-fabricated silver nanoparticles’ ...
An on-field colorimetric sensing strategy employing gold nanoparticles (AuNPs) and a paper-based ana...
The exceptional and specific reactivity of mercury ions (Hg2+) toward plasmonic silver nanoparticles...
The exceptional and specific reactivity of mercury ions (Hg2+) toward plasmonic silver nanoparticles...
The exceptional and specific reactivity of mercury ions (Hg2+) toward plasmonic silver nanoparticles...
Rapid industrial progress has led to the elevation of heavy metal concentration in the environment...
A sensitive and selective Hg2+ optical sensor has been developed based on the redox interaction of H...
A sensitive and selective colorimetric detection method for mercury(II) has been well-estabilished i...
Facile unmodified silver nanoparticles (AgNPs) as colorimetric sensor for determination of Hg(II) io...
Concerns over exposure to mercury have motivated the exploration of cost-effective, rapid, and relia...
A simple colorimetric approach for mercury ion (Hg2+) sensing was developed that was based on the Hg...
The continuously increasing flow of toxic heavy metals to the environment due to intensive industria...
The emission of mercury (II) from coal combustion and other industrial processes may have impacts on...
Mercury (Hg) is a potent neurotoxin in fish, wildlife, and humans. The detection of Hg(II) ions in w...
Precisely probing heavy metal ions in water is important for molecular biology, environmental protec...
Development of selective colorimetric detectors that can use green-fabricated silver nanoparticles’ ...
An on-field colorimetric sensing strategy employing gold nanoparticles (AuNPs) and a paper-based ana...