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Large excitonic effects in group-IV sulfide monolayers
Blair R. Tuttle
, Saeed M. Alhassan
, Sokrates T. Pantelides
School of Science (Behrend)
Research output
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Contribution to journal
›
Article
›
peer-review
49
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Keyphrases
Sulfide
100%
Optoelectronic Applications
100%
Excitonic Effects
100%
Two Dimensional Materials
50%
Electronic Structure Calculations
50%
Quasiparticle Excitations
50%
Layered Materials
50%
2D Semiconductors
50%
Quasiparticles
50%
Absorption Edge
50%
Bound Exciton
50%
Class Group
50%
Bethe-Salpeter Equation
50%
Nanoscale Optoelectronics
50%
Materials Class
50%
Electron-hole Interaction
50%
Chemistry
Sulfide
100%
Monolayers
100%
Binding Energy
66%
Quasiparticle
66%
Optoelectronics
66%
Two-Dimensional Material
33%
Electronic State
33%
Exciton
33%
Bound Exciton
33%
Hole (Electron)
33%
Layered Material
33%
Physics
Sulfide
100%
Optoelectronics
66%
Exciton
66%
Binding Energy
66%
Quasiparticle
66%
Nanoscale
33%
2D Material
33%
Holes (Electron Deficiencies)
33%
Energy Levels
33%
Layered Material
33%
Bethe-Salpeter Equation
33%
Material Science
Monolayers
100%
Sulfide
100%
Thioether
100%
Two-Dimensional Material
33%
Layered Material
33%
Materials Class
33%
Energy Levels
33%