Search Results - "Deiner, L J"
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Promotion of Formaldehyde Production from Adsorbed Methoxy by Oxidation of Mo(110) with NO2
Published in The journal of physical chemistry. B (28-04-2005)“…The reaction of methoxy (OCH3) in the presence of NO2 is studied on a thin-film oxide of Mo(110) for its relevance to the alkane-assisted reduction of NO x …”
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Water Dissociation Associated with NO2 Coadsorption on Mo(110)-(1 × 6)-O: Effect of Coverage and Electronic Properties of Oxygen
Published in The journal of physical chemistry. B (03-11-2005)“…Water dissociation on an oxygen-covered Mo(110) surface was investigated using temperature-programmed reaction spectroscopy (TPRS) and infrared reflectance…”
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Insight into the Partial Oxidation of Propene: The Reactions of 2-Propen-1-ol on Clean and O-Covered Mo(110)
Published in Journal of the American Chemical Society (29-10-2003)“…The reactions of 2-propen-1-ol (allyl alcohol) were studied on clean and O-covered Mo(110) to understand the effect of resonance stabilization and the presence…”
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4
Rearrangement as a probe for radical formation: bromomethylcyclopropane on oxygen-covered Mo(1 1 0)
Published in Surface science (20-05-2001)“…The reactions of bromomethylcyclopropane on oxygen-covered Mo(1 1 0) were studied in order to investigate the lifetimes of radical intermediates, which are…”
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5
Modification of dehydrogenation activity of nickel on O-covered Mo(1 1 0)
Published in Surface science (01-08-2003)“…The reactivity of methanol on Ni ( θ⩽1.2 ML) on Mo(1 1 0)–(1 × 6)-O is studied using temperature programmed reaction and X-ray photoelectron spectroscopies…”
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The reaction of CH3NO2 on O-covered Mo(110): the effect of oxygen on product distribution
Published in Surface science (20-04-2004)Get full text
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Potential intermediate in CH4-assisted reduction of nitric oxide: the reactions of methyl nitrite on oxidized Mo(1 1 0)
Published in Surface science (20-04-2001)Get full text
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Low-Temperature Reduction of NO2 on Oxidized Mo(110)
Published in The journal of physical chemistry. B (07-07-2005)“…The reactions of nitrogen dioxide (NO2) were investigated on oxidized Mo(110) containing both chemisorbed oxygen and a thin film oxide. NO2 reacts on both…”
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Mechanisms of Fatty Acid and Triglyceride Dispersant Bonding in Non-Aqueous Dispersions of NiO
Published in Journal of the American Ceramic Society (01-03-2013)“…Infrared spectroscopy was used to identify the mechanism of fatty acid and triglyceride dispersant bonding to NiO in 2‐butanol for a series of triglyceride and…”
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Evidence for diffusional coupling in electrochemical thin layers: implications for surface coverage calibration via electrochemical infrared spectroscopy
Published in Journal of solid state electrochemistry (01-05-2008)“…The time dependence of the concentration of CO 2 in an electrochemical thin layer cavity is studied with Fourier transform infrared spectroscopy (FTIR) in…”
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11
Promotion of Formaldehyde Production from Adsorbed Methoxy by Oxidation of Mo(110) with NO 2
Published in The journal of physical chemistry. B (28-04-2005)Get full text
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12
Low-Temperature Reduction of NO 2 on Oxidized Mo(110)
Published in The journal of physical chemistry. B (07-07-2005)Get full text
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13
Low-temperature reduction of NO(2) on oxidized Mo(110)
Published in The journal of physical chemistry. B (07-07-2005)“…The reactions of nitrogen dioxide (NO(2)) were investigated on oxidized Mo(110) containing both chemisorbed oxygen and a thin film oxide. NO(2) reacts on both…”
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Potential intermediate in CH sub 4 -assisted reduction of nitric oxide: the reactions of methyl nitrite on oxidized Mo(110)
Published in Surface science (20-04-2001)“…The reactions of methyl nitrite (CH sub 3 ONO) on O-covered Mo(110) were studied in order to determine whether methyl nitrite is a possible intermediate in CH…”
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16
Insight into the Catalytic Reduction of NO by Methane: The Reaction of Nitromethane on Oxidized Mo(110)
Published in The journal of physical chemistry. B (26-12-2002)“…The reactions of nitromethane (CH3NO2) on a thin-film oxide grown on Mo(110) are investigated to gain insight into the role of nitromethane in the catalytic…”
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