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A mechanical switch device made of a polyimide-coated microfibrillated cellulose sheet
This paper covers innovative results on the development of an electrostatically actuated mechanical switch device made of a microfibrillated cellulose sheet coated with a thin polyimide layer. ForExpand
A micropillar for cavity optomechanics
We have designed a micromechanical resonator suitable for cavity optomechanics. We have used a micropillar geometry to obtain a high-frequency mechanical resonance with a low effective mass and aExpand
Gas sensors based on thick films of semi-conducting single walled carbon nanotubes
Abstract A comparative study was made of sorted semi-conducting single walled carbon nanotube (SWCNT) films and unsorted SWCNT films for gas sensing applications. The transmission line method is usedExpand
Selective differential ammonia gas sensor based on N‐doped SWCNT films
The sensing performance of a micro-sensor based on a thick film of nitrogen-doped single-walled carbon nanotube (SWCNTs) is compared to a pristine SWCNTs film. Transfer length method analysis is usedExpand
Self-oscillation mode due to fluid-structure interaction in a micromechanical valve
This letter presents an original actuation mode for a micromechanical valve based on the induction of a self-oscillation, provided by the strong coupling between a mobile mechanical part and theExpand
Pulsed-Jet Micro-Actuators Evaluation for Flow Separation Control
We describe in this paper the efforts carried out within the EU project ADVACT to evaluate miniaturized (MMMS) pulsed jets in a basic experiment in which the separation is only caused by an imposedExpand
Evaluation of sorted semi-conducting carbon nanotube films for gas sensing applications
Abstract This work focuses on the elaboration of sorted semi-conducting single walled carbon nanotube films (SC-SWCNT films), and the evaluation of a gas microsensor based on these films. First, weExpand
Coated and functionalised single-walled carbon nanotubes (SWCNTs) as gas sensors
Abstract: This chapter focuses on the performances of gas sensors based on single-walled carbon nanotubes (SWCNTs). The chapter first reviews chemiresistor and field-effect transistor sensorExpand
A micro-resonator for fundamental physics experiments and its possible interest for time and frequency applications
A dedicated micro-resonator in a length-extension mode (LEM) has been developing for fundamental physics experiments, aiming to detect the quantum ground state of a resonator. The experiment is basedExpand
Thickness dependent sensing mechanism in sorted semi-conducting single walled nanotube based sensors.
TLDR
It is demonstrated that below the metallic SWCNT percolation threshold, sensing is dominated by the modulation of the Schottky barrier, while above this threshold, it is only attributed to a charge transfer betweenSWCNT and gas molecules. Expand
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