Search Results - "Curtiss, Thomas J"
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Rotational State Selection and Orientation of OH and OD Radicals by Electric Hexapole Beam-Focusing
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (09-10-1997)“…An electrostatic hexapole was used to state-select OH and OD radicals in single, low-lying, |JΩM J〉 rotational states. The radicals were produced in a corona…”
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Oxidation of Organic Films by Beams of Hydroxyl Radicals
Published in The journal of physical chemistry. B (17-01-2008)“…We have studied the oxidation of self-assembled monolayers (SAMs) of alkanes and alkenes with a thermal beam of OH radicals. The target films were produced by…”
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3
Controlling the Orientation of Hexapole-Selected Hydroxyl (OH) Radicals
Published in The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory (26-11-1998)“…Recently, Hain, Toby D.; Weibel, Michael A.; Backstrand, Kyle M.; and Curtiss, Thomas J. J. Phys. Chem. A 1997, 101, 7674 reported the production of intense,…”
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4
Observation of two reaction pathways for water formation from hydroxyl radical covered Pt(111)
Published in Chemical physics letters (01-05-1998)“…Intense molecular beams of hydroxyl radicals produced in a supersonic corona discharge source were focused and state-selected by an electrostatic hexapole…”
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Experimental validation of formaldehyde rotational state selection
Published in Chemical physics letters (13-06-2007)“…Rotational state selection of formaldehyde is presented. Data agrees with a rigorous quantum mechanical treatment of the Stark effect. We present experimental…”
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Oriented molecule beams: focused beams of rotationally cold polar polyatomic molecules
Published in Journal of physical chemistry (1952) (01-10-1987)Get full text
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Hexapole-oriented molecule beams scattered by single crystal surfaces
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8
Rotational-state-resolved collisional attenuation of hexapole focused hydroxyl radical beams by gas-phase target molecules
Published in Chemical physics letters (28-05-1999)“…Hydroxyl radicals from a supersonic discharge source were rotationally state-selected by a hexapole. Two |J Ω M〉 states were resolved, the | 3 2 3 2 3 2 〉 and…”
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9
Temperature-programmed desorption studies of the interactions of OD and CO with Pt(111)
Published in Surface science (01-01-2000)“…Temperature-programmed desorption (TPD) measurements were made to probe the interactions of hydroxyl radicals (OD) with Pt(111). A pure, intense molecular beam…”
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10
Generation of intense, hexapole-selected, supersonic beams of fluorocarbon radicals: CF, CF 2 , and CF 3
Published in Journal of vacuum science & technology. A, Vacuum, surfaces, and films (01-07-1997)“…Intense molecular beams of fluorocarbon radicals were generated with a corona discharge passing through a supersonic jet expansion of 15% C 2 F 6 in Ar. An…”
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11
State-selected beams of hydroxyl radicals via electric hexapole focusing
Published in Chemical physics letters (29-11-1996)“…We report the development of a new molecular beam source of hydroxyl radicals. An electrostatic hexapole focuses and state-selects radicals produced in a…”
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12
Generation of intense, hexapole-selected, supersonic beams of fluorocarbon radicals: CF, CF2, and CF3
Published in Journal of vacuum science & technology. A, Vacuum, surfaces, and films (01-07-1997)“…Intense molecular beams of fluorocarbon radicals were generated with a corona discharge passing through a supersonic jet expansion of 15% C2F6 in Ar. An…”
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13
Asymmetry of the polarized-laser-induced photofragmentation of oriented CH3I molecules
Published in Physical review letters (28-12-1987)Get full text
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14
Hexapole-oriented molecule beams scattered by single crystal surfaces
Published 01-01-1990“…A newly constructed machine capable of producing beams of spatially oriented molecules is described in detail. Beam molecules are focused and state-selected by…”
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Dissertation -
15
Asymmetry of the Polarized-Laser-Induced Photofragmentation of Oriented C H 3 I Molecules
Published in Physical review letters (01-12-1987)Get full text
Journal Article