Title of article
Dynamics of surface reactions studied by field emission microscopy and atom-probe mass spectrometry
Author/Authors
Kruse، نويسنده , , N.، نويسنده ,
Issue Information
دوماهنامه با شماره پیاپی سال 2001
Pages
11
From page
51
To page
61
Abstract
Recent progress in imaging surface chemical reactions and adsorbate-induced reconstruction by means of field ion microscopy is reviewed. Achievements and prospects of a local chemical analysis during imaging are also presented and discussed.
shape transformation is reported to occur during the field-free interaction of oxygen with Rh crystal tips. Rather than hemispherical when clean they appear polyhedral after reaction at temperatures between 500 and 550 K.
c non-linearities are found in both the NO and NO2 reaction with hydrogen on the surface of a pyramidal Pt crystal tip. Oscillatory reaction behavior is observed for both reactions. In the NO2–H2 case explosive ignition in {0 1 2} planes is followed by one-dimensional chemical wave propagation along the 〈1 0 0〉 zone lines. Atom-probe time-of-flight mass spectrometry demonstrates that water (field ionized as H2O+ and H3O+) is the product of the catalytic reaction.
the NO/H2 reaction, dynamic formation and motion of small islands are observed. These islands appear on the (0 0 1) pole and are interpreted as being due to adsorbed hydroxyl species. Island sizes are confined to the equivalent of 10–30 Pt atoms.
Journal title
Ultramicroscopy
Serial Year
2001
Journal title
Ultramicroscopy
Record number
2155674
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