International audienceWe report the fabrication of nanostructured microcantilevers employed as sensors for the detection of organophosphorus (OPs) vapors. These micromechanical sensors are prepared using a two-step procedure first optimized on a silicon wafer. TiO 2 one-dimensional nanostructures are synthesized at a silicon surface by a solvothermal method and then grafted with bifunctional molecules having an oxime group known for its strong affinity with organophosphorus compounds. The loading of oxime molecules grafted on the different nanostructured surfaces was quantified by UV spectroscopy. It has been found that a wafer covered by vertically aligned rutile TiO 2 nanorods (NRs), with an average length and width of 9.5 μm and 14.7 nm,...
Thesis (Ph.D.)--University of Washington, 2014This dissertation discusses an explosive sensing devic...
A new generation of versatile microcantilever sensors with tailorable nanoporous metal-organic frame...
In this Letter, a solution-based approach has been used for chemically immobilising oleic acid (OLEA...
International audienceWe report the fabrication of nanostructured microcantilevers employed as senso...
International audienceIn order to develop a detector working in the gas phase for organophosphorus m...
The detection of organophosphorous compounds remains one of the major issues to be addressed in orde...
La détection d’agents organophosphorés (OPs) demeure l’un des problèmes majeurs à résoudre pour prév...
The development of a sensitive, selective, fast, reliable, and moderate cost portable detection syst...
In this study, nanostructured, functionalized microcantilevers have been designed, fabricated, and c...
Le développement d’un système de détection sensible, sélectif, rapide, fiable et portable à coût mod...
We have developed a highly selective and sensitive nanomechanical infrared (IR) calorimetric spectro...
AbstractA convenient and rapid procedure has been achieved to immobilize densely packed nanoporous 3...
The goal of this study is to create a biomolecular sensing device with high sensitivity and selectiv...
The objective of this work is to design and fabricate an advanced silicon dioxide microcantilever se...
Thesis (Ph.D.)--University of Washington, 2014This dissertation discusses an explosive sensing devic...
A new generation of versatile microcantilever sensors with tailorable nanoporous metal-organic frame...
In this Letter, a solution-based approach has been used for chemically immobilising oleic acid (OLEA...
International audienceWe report the fabrication of nanostructured microcantilevers employed as senso...
International audienceIn order to develop a detector working in the gas phase for organophosphorus m...
The detection of organophosphorous compounds remains one of the major issues to be addressed in orde...
La détection d’agents organophosphorés (OPs) demeure l’un des problèmes majeurs à résoudre pour prév...
The development of a sensitive, selective, fast, reliable, and moderate cost portable detection syst...
In this study, nanostructured, functionalized microcantilevers have been designed, fabricated, and c...
Le développement d’un système de détection sensible, sélectif, rapide, fiable et portable à coût mod...
We have developed a highly selective and sensitive nanomechanical infrared (IR) calorimetric spectro...
AbstractA convenient and rapid procedure has been achieved to immobilize densely packed nanoporous 3...
The goal of this study is to create a biomolecular sensing device with high sensitivity and selectiv...
The objective of this work is to design and fabricate an advanced silicon dioxide microcantilever se...
Thesis (Ph.D.)--University of Washington, 2014This dissertation discusses an explosive sensing devic...
A new generation of versatile microcantilever sensors with tailorable nanoporous metal-organic frame...
In this Letter, a solution-based approach has been used for chemically immobilising oleic acid (OLEA...