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Oxide sensors

Plane oxide sensors were used to study lateral diffusion of H-atoms and spill-over effect. [Pg.3]

In conclusion it should be emphasized that the principle objective of this section was to prove the physical-chemical suitability of semiconductor oxide sensors for quantitative measurements of extremely small concentrations of atoms of many metals both in vacuum and deposited... [Pg.192]

Nyberg 1988 metal oxide sensor layer whose reflectivity reversibly changes with p02... [Pg.26]

FIGURE 1.6 Abdominal X-ray showing the apparatus consisting of two nitric oxide sensors, a 4-channel pH catheter, and a Teflon nasogastric tube. (Reprinted with permission from the American Gastroenterological Association [82].)... [Pg.38]

X.J. Zhang, L. Cardosa, M. Broderick, H. Fein, and J. Lin, An integrated nitric oxide sensor based on carbon fiber coated with selective membranes. Electroanalysis 12, 1113-1117 (2001). [Pg.48]

X.J. Zhang, J. Lin, L. Cardoso, M. Broderick, and V. Darley-Usmar, A novel microchip nitric oxide sensor with sub-nM detection limit. Electroanalysis 14, 697-703 (2002). [Pg.48]

J.K. Park, P.H. Tran, J.K.T. Chao, R. Ghodadra, R. Rangarajan, and N.V. Thakor, In vivo nitric oxide sensor using non-conducting polymer-modified carbon fiber. Biosens. Bioelectron. 13, 1187—1195 (1998). [Pg.48]

Y. Lee, B.K. Oh, and M.E. Meyerhoff, Improved planar amperometric nitric oxide sensor based on platinized platinum anode. 1. Experimental results and theory when apphed for monitoring NO release from diazeniumdiolate-doped polymeric films. Anal. Chem. 76, 536-544 (2004). [Pg.49]

EN 50291 also determines the limits of cross-sensitivities to H2, C02, NO, S02, ethanol and hexamethyldisiloxane. The latter is known to cause poisoning of pel-listors and metal oxide sensors. [Pg.159]

Suitable methods for CO indoor monitoring are based on using metal oxide sensors (chapter 5.3.2.1), electrochemical cells (chapters 5.3.2.3 and 5.3.2.4), pellis-tors (chapter 53.2.2) and optical methods (chapter 5.3.2.5). An overview of CO-sensors and systems is given in Tab. 5.9. [Pg.159]

CO Resistive sensors pellistors, metal-oxide sensors Optical sensors micro-spectrometer, IR-sources, IR-detectors, IR-filters Hybrid or integrated, surface micromachining Sn02 sintered thick film (Figaro, FIS,. ..), Sn02 thin and thick film on silicon (MiCS, Microsens) IR spectroscopy (Vaisala, Honeywell,. ..)... [Pg.223]

Exhaust gases Smoke Resistive sensors pellistors, oxygen-sensors, metal-oxide sensors Hybrid or integrated Hybrid or integrated... [Pg.223]

Tomchenko, A. A. Harmer, G. P. Marquis, B. T., Detection of chemical warfare agents using nanostructured metal oxide sensors, Sens. Actuators B. 2005, 108,41 55... [Pg.96]

Metal oxide sensors (MOS), smart, 22 717 Metal oxide supported catalysts, 5 336-337 coke formation on, 5 267—270 Metal passivation, in industrial water treatment, 26 137 Metal peroxides, 18 410 Metal phosphates, tertiary, 18 840 Metal-phosphorus alloys, 19 59 Metal phthalocyanines, electrochromic materials, 6 572t, 576-577 Metal prefinishing, detersive systems for, 8 413t... [Pg.569]

S. Sekimoto, H. Nakagawa, S. Okazaki, K. Fukuda, S. Asakura, T Shigemori, and S. Takahashi, A fiber-optic evanescent-wave hydrogen gas sensor using palladium-supported tungsten oxide. Sensors Actuators B 66(1-3), 142-145 (2000). [Pg.135]

Y. G. Choi, G. Sakai, K. Shimanoe, Y. Teraoka, N. Miura, and N. Yamazoe, Preparation of size and habit-controlled nano crystalhtes of trmgsten oxide. Sensors Actuators B 93(1—3), 486-494... [Pg.138]


See other pages where Oxide sensors is mentioned: [Pg.183]    [Pg.392]    [Pg.249]    [Pg.716]    [Pg.766]    [Pg.198]    [Pg.241]    [Pg.242]    [Pg.243]    [Pg.256]    [Pg.270]    [Pg.361]    [Pg.44]    [Pg.500]    [Pg.502]    [Pg.512]    [Pg.142]    [Pg.144]    [Pg.159]    [Pg.161]    [Pg.163]    [Pg.164]    [Pg.223]    [Pg.150]    [Pg.130]    [Pg.4]    [Pg.6]    [Pg.6]    [Pg.7]    [Pg.8]    [Pg.9]   


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Advances in nitrogen oxides sensors

Aluminum oxide moisture sensor

Amorphous Oxide Surfaces as Electrochemical Sensors

Amperometric sensors, nitric oxide

Capacitor sensors metal-oxide-semiconductor

Cell culture sensors, nitric oxide

Chemical nitrogen oxide sensors

Chromium oxide electrodes for NO sensors

Complementary metal oxide semiconductor-based sensors

Complementary metal oxide sensors

Complementary metal-oxide sensor system

Criteria for Metal Oxide Application in Solid Electrolyte-Based Gas Sensors

Electrochemical sensors oxidation

Electrolyte metal oxide oxygen sensor

Fabrication nitric oxide releasing sensors

Gas sensors based on semiconducting metal oxides

Gaseous oxide sensors

Humidity sensors materials metal oxides

Metal Oxide-Based Nanocomposites for Conductometric Gas Sensors

Metal Oxides for Room-Temperature Gas Sensors

Metal oxide gas sensors

Metal oxide semiconductive sensors

Metal oxide semiconductor chemical sensors

Metal oxide semiconductor gas sensors in environmental monitoring

Metal oxide semiconductor sensors

Metal oxide sensor

Metal-oxide semiconductor gas sensors

Metal-oxide sensors compatible

Metal-oxide sensors sensor system

Micro-calorimetric complementary metal oxide semiconductor gas sensor

Micromachined metal-oxide gas sensors

Miniaturized Metal-Oxide Sensors

Moisture measurement oxide sensors

Nitric oxide electrochemical sensors

Nitric oxide electrochemical sensors Clark type NO electrodes

Nitric oxide electrochemical sensors NO standard solution

Nitric oxide electrochemical sensors SNAP decomposition

Nitric oxide electrochemical sensors applications

Nitric oxide electrochemical sensors characterization

Nitric oxide electrochemical sensors detection limit

Nitric oxide electrochemical sensors determination principles

Nitric oxide electrochemical sensors integrated NO microelectrodes

Nitric oxide electrochemical sensors measurement methods

Nitric oxide electrochemical sensors microbial adhesion, limitations

Nitric oxide electrochemical sensors selectivity

Nitric oxide electrochemical sensors sensitivity

Nitric oxide electrochemical sensors significance

Nitric oxide electrochemical sensors temperature and pH effect

Nitric oxide sensor

Nitrogen oxide gas sensor

Nitrogen oxide sensor

Nitrogen oxides sensor cell

Oxidation potential solid electrolyte sensors

Oxidation-reduction sensors

Oxide additives, conductance sensor material

Oxides gas sensors

Perovskite-type oxides sensors

Real metal oxide sensors

Roles for NAD(P)H Oxidases as Vascular Oxygen Sensors and Their Influence on Oxidant-Regulated Signaling Mechanisms

Semiconducting metal oxides, gas sensors

Semiconducting oxide gas sensors

Sensing mechanism of carbon nanotube-metal oxide gas sensors

Sensor oxidic glass-forming melts

Sensors metal-oxide nanoparticle

Single-cell sensors, nitric oxide

Surface Modifiers for Metal Oxides in Conductometric Gas Sensors

Thick-film-based metal-oxide sensors

Tin oxide gas sensor

Which Metal Oxides Are Better for Solid-State Electrochemical Gas Sensors

Zirconium oxide oxygen sensors

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