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Alignment of electronic energy levels at electrochemical interfaces
Jun Cheng, Michiel Sprik
Chemistry
School of Natural & Computing Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
227
Citations (Scopus)
Overview
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Chemical Compounds
Valence Band
68%
Surface Potential
67%
Behavior as Electrode
61%
Energy
58%
Hydrogen
46%
Standard Potential
41%
Density Functional Theory
38%
Physical Chemistry
37%
Fermi Level
35%
Conduction Band
33%
Electrocatalysis
33%
Rutile
30%
Photocatalysis
29%
Semiconductor
23%
Error
23%
Proton
20%
Electron Particle
16%
Reduction
14%
Metal
13%
Surface
9%
Application
9%
Physics & Astronomy
energy levels
100%
alignment
95%
electronics
64%
water
40%
insertion
34%
electrodes
32%
hydrogen
32%
solid electrodes
27%
density functional theory
27%
valence
25%
physical chemistry
24%
hydroxyl radicals
23%
rutile
18%
conduction bands
15%
diagrams
13%
protons
11%
shift
10%
liquids
9%
metals
9%
electrons
7%
energy
5%