Multi-walled carbon nanotubes (MWCNTs) doped Poly(Methyl MethAcrylate) (PMMA) microfiber was proposed and demonstrated for relative humidity sensing. It was prepared through a direct drawing technique to achieve a diameter of 5 μm and a length of 5 mm. As the relative humidity increases from 45% to 80%, the output power of the sensor decreases linearly with a sensitivity of 0.3341 dBm/% and a resolution of 1.649%. The result signifies that PMMA doped with MWCNTs exhibits better sensitivity and higher resolution compared to the un-doped PMMA microfiber sensor. In addition, the sensor exhibits high reliability as well good repeatability
Textile-based humidity sensors can be an important component of smart wearable electronic-textiles a...
The developments of novel tapered plastic optical fibers (POFs) devices have become the central focu...
Polymer/carbon nanotube (CNT) composite monofilaments were produced and tested for sensing activity....
Multi-walled carbon nanotubes (MWCNTs) doped Poly(Methyl MethAcrylate) (PMMA) microfiber was propose...
We demonstrated performance comparison of optical humidity sensor for bare and Multi-walled carbon n...
The properties of the humidity sensors made of chemically treated and untreated multi-walled carbon ...
The sensing of relative humidity (RH) at room temperature has potential applications in several area...
A room temperature microfabrication technique using SU8, an epoxy-based highly functional photoresis...
A new type of capacitive humidity sensor is introduced in this paper. The sensor consists of two pla...
This electronic document is a "live" A capacitive humidity sensor, fabricated by depositing multi-wa...
A PMMA microfiber loop resonator (PMLR) coated with zinc oxide (ZnO) nanostructure is proposed and d...
A capacitive humidity sensor is presented for moisture detection at room temperature. The sensor is ...
This article describes the non-covalent functionalization of multiwall carbon nanotubes (MWCNTs) wit...
We demonstrated performance comparison of optical humidity sensor for bare and Multi-walled carbon n...
International audienceFor the first time vapour sensors were made by assembling multi-wall carbon na...
Textile-based humidity sensors can be an important component of smart wearable electronic-textiles a...
The developments of novel tapered plastic optical fibers (POFs) devices have become the central focu...
Polymer/carbon nanotube (CNT) composite monofilaments were produced and tested for sensing activity....
Multi-walled carbon nanotubes (MWCNTs) doped Poly(Methyl MethAcrylate) (PMMA) microfiber was propose...
We demonstrated performance comparison of optical humidity sensor for bare and Multi-walled carbon n...
The properties of the humidity sensors made of chemically treated and untreated multi-walled carbon ...
The sensing of relative humidity (RH) at room temperature has potential applications in several area...
A room temperature microfabrication technique using SU8, an epoxy-based highly functional photoresis...
A new type of capacitive humidity sensor is introduced in this paper. The sensor consists of two pla...
This electronic document is a "live" A capacitive humidity sensor, fabricated by depositing multi-wa...
A PMMA microfiber loop resonator (PMLR) coated with zinc oxide (ZnO) nanostructure is proposed and d...
A capacitive humidity sensor is presented for moisture detection at room temperature. The sensor is ...
This article describes the non-covalent functionalization of multiwall carbon nanotubes (MWCNTs) wit...
We demonstrated performance comparison of optical humidity sensor for bare and Multi-walled carbon n...
International audienceFor the first time vapour sensors were made by assembling multi-wall carbon na...
Textile-based humidity sensors can be an important component of smart wearable electronic-textiles a...
The developments of novel tapered plastic optical fibers (POFs) devices have become the central focu...
Polymer/carbon nanotube (CNT) composite monofilaments were produced and tested for sensing activity....