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Temperature effects in transition metal ion and cluster ion reactions
Vladimir E. Bondybey
, Martin K. Beyer
Chair of Physical Chemistry
Technical University of Munich
Research output
:
Contribution to journal
›
Article
›
peer-review
37
Scopus citations
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Keyphrases
Temperature Effect
100%
Temperature Rise
100%
Metal Clusters
100%
Transition Metal Ions
100%
Ion-ion
100%
Collision Complexes
100%
Transition Metal Clusters
100%
Cluster Ions
100%
Well-defined
50%
Size Dependence
50%
Benzene
50%
Metal Atoms
50%
Solvate
50%
Complex Formation
50%
Cluster Size
50%
Bulk Metal
50%
Fourier Transform Ion Cyclotron Resonance Mass Spectrometry (FT-ICR MS)
50%
Interaction Energy
50%
Heat Capacity
50%
Internal Temperature
50%
Soft Landing
50%
High Vacuum
50%
Reactive Compounds
50%
Heating Effect
50%
Argon Atom
50%
Condensed-phase Reactions
50%
Polyatomic Molecules
50%
Energy Redistribution
50%
Mass Spectrometric Studies
50%
Anionic Clusters
50%
Cationic Clusters
50%
Chemistry
Metal Atom
100%
Condensed Phase
100%
Cluster Ion
100%
Fourier-Transform Ion Cyclotron Resonance
100%
Heat Capacity
100%
Argon Atom
100%
Metal Ion
100%
Transition Metal
100%
Benzene
100%
Complex Formation
100%