Pattern recognition methods such as linear discriminant analysis and principal component analysis are useful tools for the identification of analytes such as metal ions. These typically use a number of distinct molecular probes that exhibit cross-reactivity. Here we report a single molecule that demonstrates varying response in different solvents, therefore enabling the combination of probe and solvent to generate the required array diversity. Seven toxic metal ions were introduced as aqueous samples, and PCA and LDA techniques applied. The array could correctly identify all metals in pure water samples, all metals in doped lake-water samples. Further, we have explored the limit of detection of the system for two metal ions, Cu(ii) and Hg(i...
Many anions and metal ions are of biological and environmental importance. This work describes our a...
As one important kind of sensitive analytical technology, fluorescence method is widely applied in e...
Transition metals (TM) are found in the environment and living systems. When present in excess, thes...
Herein, a small-molecule fluorescent sensor array for rapid identification of seven heavy metal ions...
A sensor array containing 9 cross-reactive sensing fluorescent elements with different affinity and ...
Herein, a small-molecule fluorescent sensor array for rapid identification of seven heavy metal ions...
Herein, a small-molecule fluorescent sensor array for rapid identification of seven heavy metal ions...
The focus of this study was to demonstrate that, in the luminescent sensors, the signal transduction...
vital:69851The rise of humankind has caused pollution, increasing damage to the environment. The act...
Sensitive and rapid detection of chemical analytes is a widespread challenge, particularly in areas ...
Detection of heavy meals in aqueous media challenges worldwide research in developing particularly f...
We present the selective sensing of multiple transition metal ions in water using a synthetic single...
Array-based sensing offers several advantages for detecting a series of analytes with common structu...
In the present work, we report a novel colorimetric sensor array for rapid identification of heavy m...
In this present work, an exceptionally specific and selective chemosensor (Z)-5-((pyren-1-ylmethylen...
Many anions and metal ions are of biological and environmental importance. This work describes our a...
As one important kind of sensitive analytical technology, fluorescence method is widely applied in e...
Transition metals (TM) are found in the environment and living systems. When present in excess, thes...
Herein, a small-molecule fluorescent sensor array for rapid identification of seven heavy metal ions...
A sensor array containing 9 cross-reactive sensing fluorescent elements with different affinity and ...
Herein, a small-molecule fluorescent sensor array for rapid identification of seven heavy metal ions...
Herein, a small-molecule fluorescent sensor array for rapid identification of seven heavy metal ions...
The focus of this study was to demonstrate that, in the luminescent sensors, the signal transduction...
vital:69851The rise of humankind has caused pollution, increasing damage to the environment. The act...
Sensitive and rapid detection of chemical analytes is a widespread challenge, particularly in areas ...
Detection of heavy meals in aqueous media challenges worldwide research in developing particularly f...
We present the selective sensing of multiple transition metal ions in water using a synthetic single...
Array-based sensing offers several advantages for detecting a series of analytes with common structu...
In the present work, we report a novel colorimetric sensor array for rapid identification of heavy m...
In this present work, an exceptionally specific and selective chemosensor (Z)-5-((pyren-1-ylmethylen...
Many anions and metal ions are of biological and environmental importance. This work describes our a...
As one important kind of sensitive analytical technology, fluorescence method is widely applied in e...
Transition metals (TM) are found in the environment and living systems. When present in excess, thes...