Sensing volatile organic compounds (VOC) is a promising approach in particular for the development of non-invasive, fast and inexpensive tool for the anticipated diagnostic of diseases and monitoring of exposition to toxic molecules. This paper examines for the first time the potential of biobased carbon nanorods (CNR), synthesized by a simple and green method in gram scale via the pyrolysis of castor oil, to build the conducting architecture of quantum resistive vapour sensors (vQRS). The transducers are nanostructured by spraying layer by layer (sLbL) carbon nanorods (CNR) completely free from any metallic contaminants or other impurities. Then they are functionalized with poly(lactic acid) PLA and poly(vinyl acetate) PVA to providing a s...
International audienceFor the first time vapour sensors were made by assembling multi-wall carbon na...
The paper presents the tuning of sensitivity and selectivity performance of volatile organic compoun...
Detection of vapor phase analytes and gas molecules is primarily essential for numerous applications...
Sensing volatile organic compounds (VOC) is a promising approach in particular for the development o...
Different grades of chemically functionalized carbon nanotubes (CNT) have been processed by spraying...
The anticipated diagnosis of various fatal diseases from the analysis of volatile organic compounds ...
International audienceThe analysis of a volatolome is a promising approach to allow the early diagno...
Sensitive detection of volatile organic compounds (VOCs) is significant for environmental monitoring...
The high sensitivity in response, selectivity and reversibility was achieved on a carbon nanowall-ba...
International audienceNanocomposite-based quantum resistive vapour sensors (vQRS) have been develope...
10.1016/j.carbon.2014.07.032Oxygen plasma functionalized multiwall carbon nanotubes and iron oxide d...
High sensitivity, selectivity, and stability are key requirements for carbon nanotube (CNT)-based se...
There is a strong desire for novel chemical sensors that can detect low concentrations of volatile o...
This chapter introduces the topic of detection of volatile organic compounds (VOCs) via nanomaterial...
The analysis of specific VOC in exhaled breath (identified as biomarkers of specific disease like ca...
International audienceFor the first time vapour sensors were made by assembling multi-wall carbon na...
The paper presents the tuning of sensitivity and selectivity performance of volatile organic compoun...
Detection of vapor phase analytes and gas molecules is primarily essential for numerous applications...
Sensing volatile organic compounds (VOC) is a promising approach in particular for the development o...
Different grades of chemically functionalized carbon nanotubes (CNT) have been processed by spraying...
The anticipated diagnosis of various fatal diseases from the analysis of volatile organic compounds ...
International audienceThe analysis of a volatolome is a promising approach to allow the early diagno...
Sensitive detection of volatile organic compounds (VOCs) is significant for environmental monitoring...
The high sensitivity in response, selectivity and reversibility was achieved on a carbon nanowall-ba...
International audienceNanocomposite-based quantum resistive vapour sensors (vQRS) have been develope...
10.1016/j.carbon.2014.07.032Oxygen plasma functionalized multiwall carbon nanotubes and iron oxide d...
High sensitivity, selectivity, and stability are key requirements for carbon nanotube (CNT)-based se...
There is a strong desire for novel chemical sensors that can detect low concentrations of volatile o...
This chapter introduces the topic of detection of volatile organic compounds (VOCs) via nanomaterial...
The analysis of specific VOC in exhaled breath (identified as biomarkers of specific disease like ca...
International audienceFor the first time vapour sensors were made by assembling multi-wall carbon na...
The paper presents the tuning of sensitivity and selectivity performance of volatile organic compoun...
Detection of vapor phase analytes and gas molecules is primarily essential for numerous applications...