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Edges and boundaries of transition metal dichalcogenides
Sridevi Krishnamurthi
MESA+ Institute
Computational Materials Science
Research output
:
Thesis
›
PhD Thesis - Research external, graduation UT
140
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Engineering & Materials Science
Transition metals
100%
Hydrogen evolution reaction
81%
Doping (additives)
75%
Binding energy
71%
Spin density waves
53%
Charge density waves
50%
Metals
43%
Semiconductor junctions
40%
Interface states
34%
Density functional theory
33%
Charge transfer
29%
Catalyst activity
28%
Free energy
27%
Energy gap
25%
Atoms
23%
Grain boundaries
22%
Electrons
22%
Adsorption
22%
Polarization
20%
Energy storage
19%
Catalysts
19%
Electronic equipment
19%
Substrates
15%
Chemistry
Spin Density Wave
60%
Binding Energy
59%
Charge Density Wave
52%
Interface State
52%
Transition Element
49%
Work Function
39%
Grain Boundary
35%
Hydrogen
34%
Metal
30%
Energy Storage
29%
Gibbs Free Energy
25%
Band Gap
25%
Polarization
25%
Charge Transfer
23%
Density Functional Theory
21%
Electron Particle
18%
Adsorption
16%
Catalyst
14%
Application
10%
Physics & Astronomy
transition metals
56%
metals
20%
semiconductor junctions
18%
catalytic activity
17%
hydrogen
16%
energy storage
14%
electronics
14%
catalysts
12%
periodic variations
12%
charge transfer
11%
free energy
11%
density functional theory
10%
adsorption
10%
grain boundaries
10%
cells
7%
polarization
7%
atoms
6%
electrons
5%