This research proposes a substrate-integrated waveguide (SIW) cavity sensor to detect several chemicals using the microwave frequency range. The frequency response of the presented SIW sensor is switched by filling a very small quantity of chemical inside of the fluidic channel, which also causes a difference in the effective permittivity. The fluidic channel on this structure is either empty or filled with a chemical; when it is empty the structure resonates at 17.08 GHz. There is always a different resonant frequency when any chemical is injected into the fluidic channel. The maximum amount of chemical after injection is held in the center of the SIW structure, which has the maximum magnitude of the electric field distribution. Thus, the ...
A microwave microlitre binary liquid mixture concentration detection sensor with potential biologica...
This article presents the implementation of a novel microfluidic sensor based on a resonant cavity. ...
This paper presents two novel substrate integrated waveguide (SIW) sensing-elements for microfluidic...
In this study, a high-Q circular substrate-integrated waveguide (SIW) cavity resonator is proposed a...
Microwave resonators working as sensors can detect only a single analyte at a time. To address this ...
The detection of multiple fluids using a single chip has been attracting attention recently. A TM02 ...
Microwave sensors offer appealing features such as susceptibility, quick response, and non-invasiven...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
© 2018 Elsevier B.V. A planar substrate integrated waveguide (SIW) resonator is proposed in this le...
A novel microfluidic-integrated microwave sensor with potential application in microliter-volume bio...
In this article we propose a novel label-free chemical/biochemical sensing device based on a wavegui...
The proposed structure in this research is constructed on substrate integrated waveguide (SIW) techn...
This paper presents an overview of recent advances in substrate integrated waveguide (SIW) technolog...
This paper presents a microwave microfluidic sensor based on a substrate integrated waveguide (SIW) ...
In this study, a critical evaluation of analyte dielectric properties in a microvolume was undertake...
A microwave microlitre binary liquid mixture concentration detection sensor with potential biologica...
This article presents the implementation of a novel microfluidic sensor based on a resonant cavity. ...
This paper presents two novel substrate integrated waveguide (SIW) sensing-elements for microfluidic...
In this study, a high-Q circular substrate-integrated waveguide (SIW) cavity resonator is proposed a...
Microwave resonators working as sensors can detect only a single analyte at a time. To address this ...
The detection of multiple fluids using a single chip has been attracting attention recently. A TM02 ...
Microwave sensors offer appealing features such as susceptibility, quick response, and non-invasiven...
In this paper, a novel planar microfluidic microwave sensor based on a Substrate Integrated Waveguid...
© 2018 Elsevier B.V. A planar substrate integrated waveguide (SIW) resonator is proposed in this le...
A novel microfluidic-integrated microwave sensor with potential application in microliter-volume bio...
In this article we propose a novel label-free chemical/biochemical sensing device based on a wavegui...
The proposed structure in this research is constructed on substrate integrated waveguide (SIW) techn...
This paper presents an overview of recent advances in substrate integrated waveguide (SIW) technolog...
This paper presents a microwave microfluidic sensor based on a substrate integrated waveguide (SIW) ...
In this study, a critical evaluation of analyte dielectric properties in a microvolume was undertake...
A microwave microlitre binary liquid mixture concentration detection sensor with potential biologica...
This article presents the implementation of a novel microfluidic sensor based on a resonant cavity. ...
This paper presents two novel substrate integrated waveguide (SIW) sensing-elements for microfluidic...