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Titlebook: Sensors and Microsystems; AISEM 2010 Proceedin Giovanni Neri,Nicola Donato,Corrado Di Natale Conference proceedings 2011 Springer Science+B

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Gas Microsensors with Metalloporphyrin-Functionalized Carbon Nanotube Networked Layersor NO. and NH. gas sensing applications, at a sensor temperature of 150°C. The sidewalls of the CNTs films have been modified by spray-coating with two different metalloporphyrins (MPPs) consisting of a TetraPhenylPorphyrin coordinated by a central metal of zinc (Zn-TPP) and manganese (Mn-TPP) for e
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Gas Sensing Properties of Indium Oxide Nanoparticles Prepared by Laser Ablation in Watericles with a bimodal distribution, consisting mainly of particles of small diameters (2–5 nm) accompanied by larger nanoparticles (about 10–20 nm in diameter).These colloidal solutions have been used to deposit films on interdigitated substrates in order to fabricate carbon monoxide resistive sensor
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Electrical Noise Characterization of Epoxy/MWCNT Compositeshe conducting pathways connecting different junctions, namely the nanotubes themselves. The noise-spectral density measurements reveal the existence of a threshold voltage, above which a markedly nonlinear behavior is found and is tentatively related to the specific properties of the Epoxy-mediated contact barrier among the carbon nanotubes.
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Gas Sensing Properties of Indium Oxide Nanoparticles Prepared by Laser Ablation in Wateriameter).These colloidal solutions have been used to deposit films on interdigitated substrates in order to fabricate carbon monoxide resistive sensors. In.O.(LAL) films-based sensors have shown good performances, indicating that LAL is a very promising technique for the synthesis of metal oxide nanoparticles for gas sensing.
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