Search Results - "Werdecker, Jörn"
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Observation of the adsorption and desorption of vibrationally excited molecules on a metal surface
Published in Nature chemistry (01-06-2018)“…The most common mechanism of catalytic surface chemistry is that of Langmuir and Hinshelwood (LH). In the LH mechanism, reactants adsorb, become thermalized…”
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CO Desorption from a Catalytic Surface: Elucidation of the Role of Steps by Velocity-Selected Residence Time Measurements
Published in Journal of the American Chemical Society (04-02-2015)“…Directly measuring the rate of a surface chemical reaction remains a challenging problem. For example, even after more than 30 years of study, there is still…”
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Electronically Nonadiabatic Vibrational Excitation of N2 Scattered from Pt(111)
Published in Journal of physical chemistry. C (02-07-2015)“…Molecular beam surface scattering is used to compare vibrational excitation of N2 molecules in collisions with clean Pt(111) and Au(111) surfaces under UHV…”
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State-to-state methane-surface scattering as a probe of catalytic activity
Published in Physical review research (18-11-2020)“…Quantum state-resolved scattering experiments for methane molecules colliding with a catalytically active nickel surface are compared to scattering from a…”
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Vibrational Energy Redistribution in a Gas-Surface Encounter: State-to-State Scattering of CH 4 from Ni(111)
Published in Physical review letters (01-01-2018)Get full text
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Electronically Nonadiabatic Vibrational Excitation of N 2 Scattered from Pt(111)
Published in Journal of physical chemistry. C (02-07-2015)Get full text
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Electron hole pair mediated vibrational excitation in CO scattering from Au(111): incidence energy and surface temperature dependence
Published in The Journal of chemical physics (28-09-2014)“…We investigated the translational incidence energy (Ei) and surface temperature (Ts) dependence of CO vibrational excitation upon scattering from a clean…”
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Vibrational Energy Redistribution in a Gas-Surface Encounter: State-to-State Scattering of CH_{4} from Ni(111)
Published in Physical review letters (02-02-2018)“…The fate of vibrational energy in the collision of methane (CH_{4}) in its antisymmetric C-H stretch vibration (ν_{3}) with a Ni(111) surface has been studied…”
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