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CO induced surface segregation as a means of improving surface composition and enhancing performance of CuPd bimetallic catalysts
Alan J. McCue
, James A. Anderson
Chemistry
Centre for Energy Transition
Research output
:
Contribution to journal
›
Article
›
peer-review
73
Citations (Scopus)
16
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Dive into the research topics of 'CO induced surface segregation as a means of improving surface composition and enhancing performance of CuPd bimetallic catalysts'. Together they form a unique fingerprint.
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Engineering & Materials Science
Surface segregation
100%
Dimers
86%
Surface structure
68%
Ethylene
59%
Catalysts
48%
Catalyst selectivity
41%
Acetylene
38%
Hydrogenation
35%
Catalyst activity
35%
Spectroscopy
31%
Atoms
29%
Molecules
27%
Aluminum oxide
27%
Copper
23%
Temperature
11%
Chemical Compounds
Surface Segregation
77%
Surface Composition
61%
Catalyst Activity
30%
Acetylene
26%
Reduction
26%
Catalyst
23%
Hydrogenation
21%
Surface
18%
Probe
17%
Fourier Transform Infrared Spectroscopy
15%
Molecule
9%
Physics & Astronomy
catalysts
52%
selectivity
32%
performance
25%
ethylene
22%
dimers
20%
acetylene
12%
hydrogenation
12%
copper
8%
probes
6%
estimates
6%
molecules
6%
spectroscopy
5%
atoms
5%
temperature
3%