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Oxidized, applications

In some cases, the degree of fluorine contamination of tantalum and niobium oxides containing increased fluorine levels is not very critical to the later application of the oxides. Applications related to the manufacturing of optic and electronic devices, however, require significant limitations of the fluorine content of tantalum and niobium oxides. [Pg.292]

Salmona et al. [66] used El and CIMS to identify benzothiazole derivatives leached into injections by rubber plunger seals from disposable syringes. One of the compounds was used as a rubber vulcanisation accelerator, and four others were formed during syringe sterilisation with ethylene oxide. Applications of hyphenated chemical impact mass-spectrometric techniques are described elsewhere GC-MS (Section 7.3.1.2), for polar and nonpolar volatile organics, SFC-MS (Section 13.2.2) and TLC-MS (Section 7.3.5.4). [Pg.364]

For reductive detection, however, and for some special oxidative applications, other materials perform better with respect to point 1, and usually a few experiments with different electrode materials are necessary to determine the optimum choice of working electrode material, see note in section Background Current in Chapter 2. [Pg.36]

Materials with better properties are also of interest as possible replacements for aSiO for gate oxide applications, since the ultrathin SiO layers required for low-voltage, high-drive logic is inherently too leaky to be employed. Instead, a thicker layer of a material with a higher dielectric constant is needed. As in capacitor appli-... [Pg.169]

Beaudoin G., Dupuis C., Gosselin P., Jebrak M., 2007. Mineral chemistry of iron oxides application to mineral exploration In Andrew, C.J. (ed) Ninth Biennial SGA Meeting. Society for geology Applied to Mineral Deposits, Dublin, 497-500. [Pg.10]

Sherman, D.M. (1985) Electronic structures of Ee " coordination sites in iron oxides application to spectra, bonding and magnetism. Phys. Chem. Min. 12 161-175 Sherman, D.M. (1987). Molecular orbital (SCF-Xa-SW) theory of metal-metal charge transfer processes in minerals I. Application to the Fe vpe charge transfer and electron delocalization in mixed-valenced iron oxides and si-licates.Phys Chem Min 70 1262-1269 Sherman, D.M. (1990) Crystal chemistry, electronic structure and spectra of Fe sites in clay minerals. Applications to photochemistry and electron transport. In Coyne, L.M. McKeever, S.W.S. Blake, D.F. (eds.) Spectroscopic characterization of minerals and their surfaces. A.C.S. Symposium Series 415, 284-309... [Pg.628]

Venema, P. Hiemstra,T. Weidler, P.G. van Riemsdijk,W.A. (1998) Intrinsic proton affinity of reactive surface groups of metal (hy-dr)oxides Application to iron (hydrjoxides. J. Colloid Interface Sci. 198 282-295 Venenna, P. Hiemsta, T. Van Riemsdijk,W.A. [Pg.640]

In an ideal world, crystals would be perfect or stoichiometric with constant composition. But like people crystals are not exempt from imperfections or defects. Crystals with variable composition are termed non-stoichiometric crystals. The defect chemistry of oxides is enormously complex and is extremely vital to their properties. It has involved extensive research in many laboratories and is providing extraordinary insights into structural variations, the stability of structures and the formation of new structures. Here, we first define order-disorder phenomena that are commonly associated with oxides and describe our current understanding of them. The disorder or non-stoichiometry plays a crucial role in oxide applications including catalysis and it is therefore of paramount importance. [Pg.24]

A catalyst with a substantially improved resistance to poisoning by phosphoms in catalytic oxidation applications was developed. In part, the catalyst in this program permitted printers to use photolighographic technology without paying an unreasonable cost in terms of frequent replacement of oxidation catalysts. [Pg.509]

Sensing chemical species is a much more difficult task than the measurement of mechanical variables such as pressure, temperature, and flow, because in addition to requirements of accuracy, stability, and sensitivity, there is the requirement of specificity. In the search for chemically-specific interactions that an serve as the basis for a chemical sensor, investigators should be aware of a variety of possible sensor structures and transduction principles. This paper adresses one such structure, the charge-flow transistor, and its associated transductive principle, measurement of electrical surface impedance. The basic device and measurement are explained, and are then illustrated with data from moisture sensors based on thin films of hydrated aluminum oxide. Application of the technique to other sensing problems is discussed. [Pg.166]

Sherman, D. M. (1985) The electronic structures of Fe3 coordination sites in iron oxides Applications to spectra, bonding and magnetism. Phys. Chem. Minerals, 12,161-75. [Pg.462]

Of course, the solution pH is a major factor that can be tuned to favor hydrogen reduction or water oxidation. Application of the Nernst equation for the two manifolds yields expressions 18-21 ... [Pg.131]

There are various secondary processing methods permitting the finished closed-cell foams to be converted to open-cell foams by breaking the cell walls. This is achieved by hydrolysis, oxidation, application of elevated or reduced pressure, heat or mechanical treatment By such a modification an original macrostructure... [Pg.170]

Evans, D.W. et al., Treatment of steam generator chemical cleaning wastes Development and operation of the Bruce spent solvent treatment facility, in Proc. 5th Int. Symp. Nashville, TN, 1995, International Oxidation Application, 1995. [Pg.877]

Warren, M.C., Dove, M.T., Redfem, S.A.T. (2000a) Ab initio simulation of cation ordering in oxides application to spinel. JPhys Condensed Matter 12 L43-L48 Warren, M.C., Dove, M.T., Redfem, S.A.T. (2000b) Disordering of MgAl204 spinel from first principles. Mineral Mag 64 311-317... [Pg.134]


See other pages where Oxidized, applications is mentioned: [Pg.562]    [Pg.105]    [Pg.25]    [Pg.171]    [Pg.289]    [Pg.450]    [Pg.589]    [Pg.36]    [Pg.130]    [Pg.11]    [Pg.841]    [Pg.413]    [Pg.144]    [Pg.22]    [Pg.59]    [Pg.1187]    [Pg.173]    [Pg.248]    [Pg.573]    [Pg.159]   
See also in sourсe #XX -- [ Pg.206 , Pg.207 , Pg.208 ]




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2- Substituted 1,2,3-triazole 1-oxides applications

3- Substituted imidazole 1-oxide applications

502 oxidation applicability proof

APPLICATION CHEMICAL INDUSTRY Oxides

Advanced oxidation technologies industrial applications

Alkali-promoted metal oxide catalysts applications

Amine oxides Applications

Application Oxidation of Unsaturated Lipids

Application The Oxidation of Ethanol

Application of ESCA in Oxides

Application of the Olefin Oxidation to Organic Syntheses

Application of the Oxo Reaction to Anhydro Sugars Having an Ethylene Oxide Ring

Application oxidation

Application oxidation

Application oxide

Application oxide

Application to Real Systems - Hydrogen Evolution Oxidation Reactions

Application to hydrogen oxidation in a flow system

Applications 1,2-butylene oxide

Applications Alcohol oxidation

Applications advanced oxidation processes

Applications magnesium oxide

Applications metal oxide catalysts

Applications of Ethylene Oxide

Applications of Oxidation and Hydrogenation

Applications of Oxidized Starches

Applications of XPS to Vanadium Oxides

Applications of combinatorial catalyst oxidation

Applications of nitrile oxides

Applications oxide systems

Applications partial oxidation reactions

Applications propylene oxide

Applications selective oxidation

Applications superacidic metal oxides

Applications vanadium oxide

Battery Applications of Silver Vanadium Oxide

Biomedical applications of nitric oxide-releasing polyurethanes

CVD Oxides for Corrosion-Resistance Applications

Chromium oxide applications

Coatings oxide application

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

Crystalline oxide materials, applications

Electrochemical detection applications, oxidative

Electrochemical oxidation applications

Electrochemistry of Metal Complexes: Applications from Electroplating to Oxide Layer Formation, First Edition

Electrodes, oxidation-reduction applications

Enantioselective oxidations applications

Ethylene oxide applications

Example Applications in Oxide Systems

Fingerprinting mineral deposit types using iron-oxide chemistry Application to till from Thompson, Manitoba, Canada

High-Temperature and Oxidation Protection Applications

Industrial applications H2O2, oxidation processes

Layered Manganese Oxides Applications

Liquid Phase Aerobic Oxidation Catalysis: Industrial Applications and Academic Perspectives

Lithium/silver vanadium oxide batteries applications

Metal Oxides applications

Metal-oxide catalysis selected applications

Mixed oxides application

Nanostructured oxide materials, future applications

New Developments Pharmaceutical Applications of Cu-Catalyzed Aerobic Oxidation Reactions

Nickel oxide thin film applications

Nitric oxide biomedical applications

Nitric oxide clinical applications

Nitric oxide direct application

Nitric oxide electrochemical sensors applications

Nitric oxide oxidation, application

Nitric oxide oxidation, application kinetics

Nitric oxide oxidation, application surface effects

Nitrile oxides industrial applications

Nitrile oxides synthesis applications

Non-Oxide Ceramics Structure, Technology, and Applications

On the Optimal Design of Amorphous Mangaense Oxide For Applications in Power Sources

Organocatalytic Oxidation. Ketone-Catalyzed Asymmetric Epoxidation of Alkenes and Synthetic Applications

Other Applications of Metal Oxides

Other Applications of Multi-Enzyme Oxidizing Systems

Oxidation catalyst application

Oxidation products applications

Oxidation-reduction reactions applications

Oxidation-reduction reactions practical applications

Oxidation-reduction titration applications

Oxidative Applications

Oxidative fluorescence-producing applications

Oxide Ceramics Structure, Technology, and Applications

Oxide ceramics applications

Oxide films applications

Oxide treatments, applications

Oxidized starches applications

Oxidizing functional resin applications

Pd-Catalyzed Aerobic Oxidation Reactions Industrial Applications and New Developments

Periodic operation, sulfur dioxide oxidation applications

Perovskite-type Oxides Synthesis and Application in Catalysis

Perovskites and Related Mixed Oxides for SOFC Applications

Polyethylene oxide) applications

Polyoxometalates Catalysts for Sustainable Oxidations and Energy Applications

Practical Application and Improvement of Soot Oxidation Catalysts

Properties and Applications of Chromium(III) Oxide

Solid oxide fuel cells potential application

Solid oxide fuel cells stationary power generation, application

Solid-oxide fuel-cell applications

Styrene oxide applications

Sulfate-supported metal oxides applications

Sulfur dioxide oxidation applications

Supercritical water oxidation application

Synthesis and Catalytic Applications of Nanocast Oxide-Type Perovskites

Synthetic Applications of Sulfamate Ester Oxidation

The Application of UV-Visible-NIR Spectroscopy to Oxides

The production and applications of ceramic oxide materials

Titanium oxide compounds, molecular glasses light to current applications, dyesensitized solar cells

Tungsten Oxide Nanorods Synthesis, Characterization, and Application

Various Mossbauer Spectroscopy Techniques in Study of Applications Related to Nanocrystalline Iron Oxides

Zinc oxide applications

Zinc oxide future applications

Zinc oxide technological applications

Zinc/silver oxide reserve batteries applications

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