Current portable particle detection instruments typically rely on optical methods which are limited to 100 nm diameter particles. Microfabricated bulk acoustic resonators, when used as mass balances, could take particle detection below this limit. This study examines the collection of particles onto piezoelectric bulk acoustic mode resonators from gaseous flow using classical impaction. Collection of both polystyrene latex particles and α-pinene secondary organic aerosol particles was examined in terms of frequency shift and collection efficiency. A new experimental setup was introduced which allows for adjusting major impactor, resonator, and aerosol properties. Preliminary results show the setup works for both particles while the saturati...
A series of devices have been investigated which use acoustic radiation forces to concentrate micron...
The evaluation of a sensitive MEMS particulate matter monitoring (PM) system is presented. The senso...
Abstract — This work demonstrates detection and mass measurement of single micro/nanoscale air-borne...
Current portable particle detection instruments typically rely on optical methods which are limited ...
Current portable particle detection instruments typically rely on optical methods which are limited ...
© 2016 IEEE.Current portable particle detection instruments typically rely on optical methods which ...
Recent instrument development for aerosol measurement has focussed on small-scale, on-line measureme...
The spatial sensitivity of bulk acoustic mode resonators can influence calibrations when they are im...
An acoustic resonator system has been investigated for the manipulation and entrapment of micron-siz...
Abstract — This work presents thermally actuated Micro-electromechanical resonant sensors capable of...
In this work, we demonstrate the potential of a piezoelectric resonator for developing a low-cost se...
This work presents thermally actuated MEMS resonators specifically designed for mass measurement of ...
This research proposed the design, fabrication, and experiments of a surface acoustic wave resonator...
This work presents the design and fabrication of Solidly Mounted Resonator (SMR) devices for the det...
We present a thin film circular diaphragm for the implementation of micro electro-mechanical systems...
A series of devices have been investigated which use acoustic radiation forces to concentrate micron...
The evaluation of a sensitive MEMS particulate matter monitoring (PM) system is presented. The senso...
Abstract — This work demonstrates detection and mass measurement of single micro/nanoscale air-borne...
Current portable particle detection instruments typically rely on optical methods which are limited ...
Current portable particle detection instruments typically rely on optical methods which are limited ...
© 2016 IEEE.Current portable particle detection instruments typically rely on optical methods which ...
Recent instrument development for aerosol measurement has focussed on small-scale, on-line measureme...
The spatial sensitivity of bulk acoustic mode resonators can influence calibrations when they are im...
An acoustic resonator system has been investigated for the manipulation and entrapment of micron-siz...
Abstract — This work presents thermally actuated Micro-electromechanical resonant sensors capable of...
In this work, we demonstrate the potential of a piezoelectric resonator for developing a low-cost se...
This work presents thermally actuated MEMS resonators specifically designed for mass measurement of ...
This research proposed the design, fabrication, and experiments of a surface acoustic wave resonator...
This work presents the design and fabrication of Solidly Mounted Resonator (SMR) devices for the det...
We present a thin film circular diaphragm for the implementation of micro electro-mechanical systems...
A series of devices have been investigated which use acoustic radiation forces to concentrate micron...
The evaluation of a sensitive MEMS particulate matter monitoring (PM) system is presented. The senso...
Abstract — This work demonstrates detection and mass measurement of single micro/nanoscale air-borne...