This paper describes the characterization of high frequency Surface Acoustic Wave Resonator-based (SAWR) sensors, for the detection of micron and sub-micron sized particles. The sensor comprises two 262 MHz ST-cut quartz based Rayleigh wave SAWRs where one is used for particle detection and the other as a reference. Electro-acoustic detection of different sized particles shows a strong relationship between mass sensitivity (Δf/Δm) and particle diameter (Dp). This enables frequency-dependent SAWR sensitivity to be tailored to the size of particles, thus making these types of sensors good candidates for PM10, PM2.5 and ultrafine particle (UFP) detection. Our initial characterisation demonstrated a typical SAWR frequency shift of 60 Hz in resp...
We present an experimental study of mass sensitivity for a Surface Acoustic Wave (SAW) sensor. Chemi...
Abstract — This work demonstrates detection and mass measurement of single micro/nanoscale air-borne...
Real time monitoring of contamination on antireflection (AR) silica coatings in high peak power lase...
This paper describes the development of a novel particle sensing system employing zinc oxide based s...
This work presents the design and fabrication of Solidly Mounted Resonator (SMR) devices for the det...
To study the sensitivity of the surface acoustic wave (SAW) sensor towards particulate matter (PM), ...
Design, fabrication and experiments of a miniature particulate matter (PM) 2.5 sensor based on the s...
This research proposed the design, fabrication, and experiments of a surface acoustic wave resonator...
Aerosol particulate matter (PM) is a known risk factor for lung and liver cancer. In particular, PM ...
In this research, Surface Acoustic Wave (SAW) sensors are combined with a cascade impactor to perfor...
Surface acoustic wave (SAW) devices are widely used for physical, chemical, and biological sensing a...
International audienceParticulate matter (PM) was estimated to cause around 7 million premature deat...
Combating the health effects of particulate matter pollution requires affordable and reliable real-t...
Current portable particle detection instruments typically rely on optical methods which are limited ...
Surface acoustic wave (SAW) devices are powerful platforms for mass sensing, chemical vapor or gas d...
We present an experimental study of mass sensitivity for a Surface Acoustic Wave (SAW) sensor. Chemi...
Abstract — This work demonstrates detection and mass measurement of single micro/nanoscale air-borne...
Real time monitoring of contamination on antireflection (AR) silica coatings in high peak power lase...
This paper describes the development of a novel particle sensing system employing zinc oxide based s...
This work presents the design and fabrication of Solidly Mounted Resonator (SMR) devices for the det...
To study the sensitivity of the surface acoustic wave (SAW) sensor towards particulate matter (PM), ...
Design, fabrication and experiments of a miniature particulate matter (PM) 2.5 sensor based on the s...
This research proposed the design, fabrication, and experiments of a surface acoustic wave resonator...
Aerosol particulate matter (PM) is a known risk factor for lung and liver cancer. In particular, PM ...
In this research, Surface Acoustic Wave (SAW) sensors are combined with a cascade impactor to perfor...
Surface acoustic wave (SAW) devices are widely used for physical, chemical, and biological sensing a...
International audienceParticulate matter (PM) was estimated to cause around 7 million premature deat...
Combating the health effects of particulate matter pollution requires affordable and reliable real-t...
Current portable particle detection instruments typically rely on optical methods which are limited ...
Surface acoustic wave (SAW) devices are powerful platforms for mass sensing, chemical vapor or gas d...
We present an experimental study of mass sensitivity for a Surface Acoustic Wave (SAW) sensor. Chemi...
Abstract — This work demonstrates detection and mass measurement of single micro/nanoscale air-borne...
Real time monitoring of contamination on antireflection (AR) silica coatings in high peak power lase...