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Controlling Band Alignment in Molecular Junctions: Utilizing Two-Dimensional Transition-Metal Dichalcogenides as Electrodes for Thermoelectric Devices
Chengjun Jin,
Gemma C. Solomon
Department of Chemistry
4
Citations (Scopus)
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Dive into the research topics of 'Controlling Band Alignment in Molecular Junctions: Utilizing Two-Dimensional Transition-Metal Dichalcogenides as Electrodes for Thermoelectric Devices'. Together they form a unique fingerprint.
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Chemical Compounds
Behavior as Electrode
34%
Electron Transport
16%
Energy
16%
Fermi Level
19%
Graphene
12%
Heat
25%
Highest Occupied Molecular Orbital
18%
Lowest Unoccupied Molecular Orbital
19%
Modification
9%
Molecule
5%
Phonon
19%
Resonance
27%
Thermoelectricity
75%
Transition Element
49%
Transport Property
15%
Work Function
19%
Engineering & Materials Science
Chemical modification
20%
Electrodes
52%
Electron Transport
21%
Fermi level
23%
Graphene
16%
Hot Temperature
13%
Molecular orbitals
46%
Molecules
13%
Phonons
21%
Thermoelectric power
19%
Transition metals
100%
Transport properties
17%
Physics & Astronomy
alignment
52%
electrode materials
19%
electrodes
42%
electronics
8%
electrons
7%
energy
10%
graphene
13%
heat
22%
molecular orbitals
33%
molecules
9%
performance
7%
phonons
11%
sensitivity
9%
transition metals
56%
transport properties
13%