Flexible ammonia (NH3) sensors based on one-dimensional nanostructures have attracted great attention due to their high flexibility and low power consumption. However, it is still challenging to reliably and cost-effectively fabricate ordered nanostructure-based flexible sensors. Herein, a smartphone-enabled fully integrated system based on a flexible nanowire sensor was developed for real-time NH3 monitoring. Highly aligned, sub-100 nm nanowires on a flexible substrate fabricated by facile and low-cost soft lithography were used as sensitive elements to produce impedance response. The detection signals were sent to a smartphone and displayed on the screen in real time. This nanowire-based sensor exhibited robust flexibility and mechanical ...
Enhanced ammonia (NH3) sensing properties based on porous flexible polyaniline/polyvinylidene fluori...
The precise determination of the type and concentration of gases is of increasing importance in nume...
The next future strategies for improved occupational safety and health management could largely bene...
Flexible ammonia (NH3) sensors based on one-dimensional nanostructures have attracted great attentio...
We report a flexible and room temperature ammonia sensor based on polypyrrole/functionalized multiwa...
A novel sensor based on the PPy nanowire arrays with high density, small diameter (about 50 nm) pres...
Reduced graphene oxide (rGO) has been studied as a resistive ammonia gas sensor at room temperature....
Room temperature operation, low detection limit and fast response time are highly desirable for a wi...
Ammonia (NH3) is a toxic gas released in different industrial, agricultural and natural processes. I...
Ammonia (NH3) is a vital compound in diversified fields, including agriculture, automotive, chemical...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
International audienceResistors based on parallel suspended polycrystalline silicon nanowires are fa...
In this work, three composite membrane materials based on polyaniline (PANI), zinc oxide (ZnO), and ...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
International audienceResistors based on parallel suspended polycrystalline silicon nanowires are fa...
Enhanced ammonia (NH3) sensing properties based on porous flexible polyaniline/polyvinylidene fluori...
The precise determination of the type and concentration of gases is of increasing importance in nume...
The next future strategies for improved occupational safety and health management could largely bene...
Flexible ammonia (NH3) sensors based on one-dimensional nanostructures have attracted great attentio...
We report a flexible and room temperature ammonia sensor based on polypyrrole/functionalized multiwa...
A novel sensor based on the PPy nanowire arrays with high density, small diameter (about 50 nm) pres...
Reduced graphene oxide (rGO) has been studied as a resistive ammonia gas sensor at room temperature....
Room temperature operation, low detection limit and fast response time are highly desirable for a wi...
Ammonia (NH3) is a toxic gas released in different industrial, agricultural and natural processes. I...
Ammonia (NH3) is a vital compound in diversified fields, including agriculture, automotive, chemical...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
International audienceResistors based on parallel suspended polycrystalline silicon nanowires are fa...
In this work, three composite membrane materials based on polyaniline (PANI), zinc oxide (ZnO), and ...
Here, we report the fabrication of a flexible room temperature ammonia gas sensor using surfactant-f...
International audienceResistors based on parallel suspended polycrystalline silicon nanowires are fa...
Enhanced ammonia (NH3) sensing properties based on porous flexible polyaniline/polyvinylidene fluori...
The precise determination of the type and concentration of gases is of increasing importance in nume...
The next future strategies for improved occupational safety and health management could largely bene...