A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for microfluidic compositional analysis. It has been fully evaluated experimentally with water and common solvents, namely methanol, ethanol, and chloroform, with excellent agreement with the expected behaviour predicted by the Debye model. The sensor’s performance has also been assessed for analysis of segmented flow using water and oil. The samples’ interaction with the electric field in the gap region has been maximized by aligning the sample tube parallel to the electric field in this region, and the small width of the gap (typically 1 mm) result in a highly localised complex permittivity measurement. The re-entrant cavity has simple mechanic...
In this article, a highly sensitive and compact microwave sensor with quality factor (Q ≈ 3000) is p...
In this paper, a new type of microwave microfluidic sensor is proposed to detect and determine the d...
International audienceA miniaturized sensor operating in Radio Frequency region (RF) is proposed to ...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
International audienceA microwave resonator is presented as a microfabricated sensor dedicated to li...
This paper describes the use of microfluidic microwave sensors for measuring the length, volume, spe...
A device for analysing the chemical composition of single- and multi-phase solvent flows using micro...
In this paper we describe a microwave sensor for microfluidic sensing using a split ring resonator (...
Abstract Designing a low-cost, compact, yet sensitive planar microwave sensor for complex permittivi...
In this paper, a new type of microwave microfluidic sensor is presented, using three separate half w...
In this paper, a new design of microwave sensor with high Q-factor for liquid characterization is an...
In this article, a highly sensitive and compact microwave sensor with quality factor (Q ≈ 3000) is p...
In this paper, a new type of microwave microfluidic sensor is proposed to detect and determine the d...
International audienceA miniaturized sensor operating in Radio Frequency region (RF) is proposed to ...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
A miniaturized 2.4 GHz re-entrant cavity has been designed, manufactured and tested as a sensor for ...
International audienceA microwave resonator is presented as a microfabricated sensor dedicated to li...
This paper describes the use of microfluidic microwave sensors for measuring the length, volume, spe...
A device for analysing the chemical composition of single- and multi-phase solvent flows using micro...
In this paper we describe a microwave sensor for microfluidic sensing using a split ring resonator (...
Abstract Designing a low-cost, compact, yet sensitive planar microwave sensor for complex permittivi...
In this paper, a new type of microwave microfluidic sensor is presented, using three separate half w...
In this paper, a new design of microwave sensor with high Q-factor for liquid characterization is an...
In this article, a highly sensitive and compact microwave sensor with quality factor (Q ≈ 3000) is p...
In this paper, a new type of microwave microfluidic sensor is proposed to detect and determine the d...
International audienceA miniaturized sensor operating in Radio Frequency region (RF) is proposed to ...