This paper presents the development of a chemical sensor employing electronic-grade carbon nanotubes (EG-CNTs) as the active sensing element for sodium hypochlorite detection. The sensor, integrated in a PDMS-glass microfluidic chamber, was fabricated by bulk aligning of EG-CNTs between gold microelectrode pairs using dielectrophoretic technique. Upon exposure to sodium hypochlorite solution, the characteristics of the carbon nanotube chemical sensor were investigated at room temperature under constant current mode. The sensor exhibited responsivity, which fits a linear logarithmic dependence on concentration in the range of 1/32 to 8 ppm, a detection limit lower than 5 ppb, while saturating at 16 ppm. The typical response ti...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
This paper presents the development of a chemical sensor employing electronic-grade carbon nanotubes...
The development of simple and low-cost chemical sensors is critically important for improving human ...
The development of simple and low-cost chemical sensors is critically important for improving human ...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceThis work reports the design of a resistive gas sensor based on 2D mats of mul...
International audienceThis work reports the design of a resistive gas sensor based on 2D mats of mul...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
International audienceThis work reports the design of a resistive gas sensor based on 2D mats of mul...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
This paper presents the development of a chemical sensor employing electronic-grade carbon nanotubes...
The development of simple and low-cost chemical sensors is critically important for improving human ...
The development of simple and low-cost chemical sensors is critically important for improving human ...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceCarbon nanotubes (CNTs) combine high electrical conductivity with high surface...
International audienceThis work reports the design of a resistive gas sensor based on 2D mats of mul...
International audienceThis work reports the design of a resistive gas sensor based on 2D mats of mul...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
International audienceThis work reports the design of a resistive gas sensor based on 2D mats of mul...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...
Here we report the fabrication and the testing of a quartz crystal nanobalance (QCN ) microsensor as...