AbstractSilicon cantilever resonators were designed and fabricated in various shapes and dimensions to be used in an airborne nanoparticle (NP) sensing application. For a repeatedly usable sensor, the cantilever surface was covered by a sacrificial layer of photoresist prior to the airborne NP sampling. Using the electrostatic precipitation method, airborne NPs were sampled on the cantilever. Within a lift-off process of wet cleaning, the photoresist layer was removed together with the trapped NPs. The resonant frequency and the quality factor (Q-factor) of the fundamental and higher order flexural modes of the silicon cantilevers were characterized for different thickness given by viscosity of the photoresist layer. It was found that the p...
Low-cost and low-power piezoresistive cantilever resonators with integrated electrothermal heaters a...
This paper reports the size-selective sampling and removal of airborne nanoparticles (NP) using a si...
In this article, WE FOCUS ON silicon nanowire (SiNW)-based resonators that were fabricated and emplo...
Silicon cantilever resonators were designed and fabricated in various shapes and dimensions to be us...
Monitoring of engineered airborne nanoparticles is prerequisite to their safe industrial use. Workme...
A silicon resonant cantilever sensor is developed for detection of airborne nanoparticles (NPs) by m...
In this paper, a silicon resonant cantilever sensor is used for monitoring airborne nanoparticles (N...
Self-exciting and self-sensing resonant cantilever sensors for airborne nanoparticles (NPs) monitori...
A portable cantilever-based nanoparticle detector (CANTOR) is developed and manufactured for sensing...
In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitiveairborne n...
In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitive airborne...
AbstractSilicon nanopillar resonators were fabricated and used for sensing airborne engineered nanop...
A portable cantilever-based airborne nanoparticle detector (CANTOR) was designed and manufactured fo...
In this paper, silicon nanowire (SiNW) array-patterned microcantilever sensors excited in the in-pla...
In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitive airborne ...
Low-cost and low-power piezoresistive cantilever resonators with integrated electrothermal heaters a...
This paper reports the size-selective sampling and removal of airborne nanoparticles (NP) using a si...
In this article, WE FOCUS ON silicon nanowire (SiNW)-based resonators that were fabricated and emplo...
Silicon cantilever resonators were designed and fabricated in various shapes and dimensions to be us...
Monitoring of engineered airborne nanoparticles is prerequisite to their safe industrial use. Workme...
A silicon resonant cantilever sensor is developed for detection of airborne nanoparticles (NPs) by m...
In this paper, a silicon resonant cantilever sensor is used for monitoring airborne nanoparticles (N...
Self-exciting and self-sensing resonant cantilever sensors for airborne nanoparticles (NPs) monitori...
A portable cantilever-based nanoparticle detector (CANTOR) is developed and manufactured for sensing...
In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitiveairborne n...
In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitive airborne...
AbstractSilicon nanopillar resonators were fabricated and used for sensing airborne engineered nanop...
A portable cantilever-based airborne nanoparticle detector (CANTOR) was designed and manufactured fo...
In this paper, silicon nanowire (SiNW) array-patterned microcantilever sensors excited in the in-pla...
In this paper, a self-out-readable, miniaturized cantilever resonator for highly sensitive airborne ...
Low-cost and low-power piezoresistive cantilever resonators with integrated electrothermal heaters a...
This paper reports the size-selective sampling and removal of airborne nanoparticles (NP) using a si...
In this article, WE FOCUS ON silicon nanowire (SiNW)-based resonators that were fabricated and emplo...