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  4. Bond-Selective and Mode-Specific Dissociation of CH3D and CH2D2 on Pt(111)
 
research article

Bond-Selective and Mode-Specific Dissociation of CH3D and CH2D2 on Pt(111)

Hundt, P. Morten  
•
Ueta, Hirokazu  
•
Van Reijzen, Maarten Eduard  
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2015
The Journal of Physical Chemistry A

Infrared laser excitation of partially deuterated methanes (CH3D and CH2D2) in a molecular beam is used to control their dissociative chemisorption on a Pt(111) single crystal and to determine the quantum state-resolved dissociation probabilities. The exclusive detection of C-H cleavage products adsorbed on the pt(111) surface by infrared absorption reflection spectroscopy indicates strong bond selectivity for both methane isotopologues upon C-H stretch excitation. Furthermore, the dissociative chemisorption of both methane isotopologues is observed to be mode-specific. Excitation-of symmetric C-H stretch modes produces a stronger reactivity increase than excitation of Me antisymmetric C-H stretch modes, whereas bend overtone excitation has a weaker effect on reactivity. The observed mode specificity and bond selectivity are rationalized by the sudden vector projection model in terms of the overlap of the reactant's normal mode vectors with the reaction coordinate at the transition state.

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Type
research article
DOI
10.1021/acs.jpca.5b07949
Author(s)
Hundt, P. Morten  
Ueta, Hirokazu  
Van Reijzen, Maarten Eduard  
Jiang, Bin
Gou, Hua
Beck, Rainer D.  
Date Issued

2015

Publisher

American Chemical Society

Published in
The Journal of Physical Chemistry A
Volume

119

Issue

50

Start page

12442

End page

12448

Subjects

methane chemisorption

•

bond selectivity

•

mode specificity

•

state resolved reactivity

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCPM  
Available on Infoscience
October 6, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/119602
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