This paper reports on a miniaturized lab-on-a-waveguide liquid-mixture sensor, achieving highly-accurate nanoliter liquid sample characterization, for biomedical applications. The nanofluidic-integrated millimeter-wave sensor design is based on near-field transmission-line technique implemented by a single loop slot antenna operating at 91 GHz, fabricated into the lid of a photolaser-based subtractive manufactured WR-10 rectangular waveguide. The nanofluidic subsystem, which is mounted on top of the antenna aperture, is fabricated by using multiple Polytetrafluoroethylene (PTFE) layers to encapsulate and isolate the liquid sample during the experiment, hence, offering various preferable features e.g. noninvasive and contactless measurements...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
In this letter, we propose a microwave sensor for nondestructive, volume-independent liquid characte...
This paper describes a microwave resonator incorporating microfluidic lab-on-chip sensor system capa...
This paper presents the nanofluidic-integrated millimeter-wave sensor design, which is based on a ne...
This paper reports on a miniaturized lab-on-a-waveguide liquid-mixture sensor, achieving highly-accu...
A novel microfluidic-integrated microwave sensor with potential application in microliter-volume bio...
A microwave microlitre binary liquid mixture concentration detection sensor with potential biologica...
International audienceThis paper demonstrates an accurate liquid sensing technique, from 40 MHz to 4...
This research investigates the characterisation of liquids using primarily substrate integrated wave...
International audienceA miniaturized sensor operating in Radio Frequency region (RF) is proposed to ...
International audienceThis paper reports the design, simulation and experimental validation of an ac...
Real-time monitoring of liquids and their contents has paramount importance in numerous fields, incl...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
We present an approach for identification and concentration determination of liquids of pico to nano...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
In this letter, we propose a microwave sensor for nondestructive, volume-independent liquid characte...
This paper describes a microwave resonator incorporating microfluidic lab-on-chip sensor system capa...
This paper presents the nanofluidic-integrated millimeter-wave sensor design, which is based on a ne...
This paper reports on a miniaturized lab-on-a-waveguide liquid-mixture sensor, achieving highly-accu...
A novel microfluidic-integrated microwave sensor with potential application in microliter-volume bio...
A microwave microlitre binary liquid mixture concentration detection sensor with potential biologica...
International audienceThis paper demonstrates an accurate liquid sensing technique, from 40 MHz to 4...
This research investigates the characterisation of liquids using primarily substrate integrated wave...
International audienceA miniaturized sensor operating in Radio Frequency region (RF) is proposed to ...
International audienceThis paper reports the design, simulation and experimental validation of an ac...
Real-time monitoring of liquids and their contents has paramount importance in numerous fields, incl...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
We present an approach for identification and concentration determination of liquids of pico to nano...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
In this letter, we propose a microwave sensor for nondestructive, volume-independent liquid characte...
This paper describes a microwave resonator incorporating microfluidic lab-on-chip sensor system capa...