Anthropogenic elemental mercury (Hg0) emission is a serious worldwide environmental problem due to the extreme toxicity of the heavy metal to humans, plants and wildlife. Development of an accurate and cheap microsensor based online monitoring system which can be integrated as part of Hg0 removal and control processes in industry is still a major challenge. Here, we demonstrate that forming Au nanospike structures directly onto the electrodes of a quartz crystal microbalance (QCM) using a novel electrochemical route results in a self-regenerating, highly robust, stable, sensitive and selective Hg0 vapor sensor. The data from a 127 day continuous test performed in the presence of volatile organic compounds and high humidity levels, showed th...
In this study, the efficiency of bimetallic (Au-Pd) nanostructures over Au and Pd substrates for ele...
Nanomaterials such as gold nanoparticles employed as solid-state sensors have attracted attention in...
We developed a novel conductometric device with nanostructured gold (Au) sensitive layer which showe...
Anthropogenic elemental mercury (Hg0) emission is a serious worldwide environmental problem due to t...
We present for the first time a nanostructured gold-based microsensor that can successfully detect e...
(QCMs) were used as transducing platform to detect and sense elemental mercury (Hg) in gas phase. Th...
Gold electrode quartz crystal microbalances (QCMs) were used as transducing platform to detect and s...
In this study, we developed a novel method of integrating the well-accepted cold vapor technique wit...
We developed a novel conductometric device with nanostructured gold (Au) sensitive layer which showe...
In recent years, mass based transducers such as quartz crystal microbalance (QCM) have gained huge i...
In this study we demonstrate that the dealloying of Cu-Au nanostructures electrochemically deposited...
Mercury is highly toxic but often neglected element that is readily emitted into the environment via...
Microelectromechanical sensors based on surface acoustic wave (SAW) and quartz crystal microbalance ...
The amalgamation of elemental mercury (Hg) with gold (Au) thin-films is a commonly utilized mechanis...
Nanomaterials such as gold nanoparticles employed as solid-state sensors have attracted attention in...
In this study, the efficiency of bimetallic (Au-Pd) nanostructures over Au and Pd substrates for ele...
Nanomaterials such as gold nanoparticles employed as solid-state sensors have attracted attention in...
We developed a novel conductometric device with nanostructured gold (Au) sensitive layer which showe...
Anthropogenic elemental mercury (Hg0) emission is a serious worldwide environmental problem due to t...
We present for the first time a nanostructured gold-based microsensor that can successfully detect e...
(QCMs) were used as transducing platform to detect and sense elemental mercury (Hg) in gas phase. Th...
Gold electrode quartz crystal microbalances (QCMs) were used as transducing platform to detect and s...
In this study, we developed a novel method of integrating the well-accepted cold vapor technique wit...
We developed a novel conductometric device with nanostructured gold (Au) sensitive layer which showe...
In recent years, mass based transducers such as quartz crystal microbalance (QCM) have gained huge i...
In this study we demonstrate that the dealloying of Cu-Au nanostructures electrochemically deposited...
Mercury is highly toxic but often neglected element that is readily emitted into the environment via...
Microelectromechanical sensors based on surface acoustic wave (SAW) and quartz crystal microbalance ...
The amalgamation of elemental mercury (Hg) with gold (Au) thin-films is a commonly utilized mechanis...
Nanomaterials such as gold nanoparticles employed as solid-state sensors have attracted attention in...
In this study, the efficiency of bimetallic (Au-Pd) nanostructures over Au and Pd substrates for ele...
Nanomaterials such as gold nanoparticles employed as solid-state sensors have attracted attention in...
We developed a novel conductometric device with nanostructured gold (Au) sensitive layer which showe...