An effusive molecular beam technique for studies of polyatomic gas–surface reactivity and energy transfer
Author:
Funder
National Science Foundation
Publisher
AIP Publishing
Subject
Instrumentation
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3577076
Reference51 articles.
1. Dissociative Chemisorption of CH4on W(110): Dramatic Activation by Initial Kinetic Energy
2. Eigenstate-Resolved Studies of Gas-Surface Reactivity:CH4(ν3) Dissociation on Ni(100)
3. Activation of methane dissociation on a Pt(111) surface
4. C−H Bond Activation of Light Alkanes on Pt(111): Dissociative Sticking Coefficients, Evans−Polanyi Relation, and Gas−Surface Energy Transfer
5. C−H Bond Activation of Light Alkanes on Pt(111): Dissociative Sticking Coefficients, Evans−Polanyi Relation, and Gas−Surface Energy Transfer
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1. Shielded ionisation discharge (SID) probe for spatiotemporal profiling of pulsed molecular beam;Review of Scientific Instruments;2023-10-01
2. Orientation–free and differentially pumped addition of a low-flux reactive gas beam to a surface analysis system;Review of Scientific Instruments;2016-11
3. Graphene Growth on Pt(111) by Ethylene Chemical Vapor Deposition at Surface Temperatures near 1000 K;The Journal of Physical Chemistry C;2015-02-25
4. Angle-Resolved Thermal Dissociative Sticking of Light Alkanes on Pt(111): Transitioning from Dynamical to Statistical Behavior;The Journal of Physical Chemistry C;2014-09-12
5. Synchrotron Radiation Photoelectron Spectroscopy Study on Oxide Evolution during Oxidation of a Si(111)-7 × 7 Surface at 300 K: Comparison of Thermal Equilibrium Gas and Supersonic Molecular Beams for Oxygen Adsorption;The Journal of Physical Chemistry C;2014-04-28
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