Quasiparticle band structure of bulk and few-layer transition-metal dichalcogenides
ORAL
Abstract
We studied the work function, ionization energy, and electron affinity of bulk and few-layer transition-metal dichalcogenides (TMDs) in 2H phase using the density functional theory (DFT) and the GW approximation. We obtained DFT band energies of few-layer TMDs with respect to the vacuum level. For the vacuum level of bulk TMDs, we considered a sufficiently thick slab system which has a similar band gap with bulk. We introduced the GW approximation to obtain the quasiparticle energy shift of valence band maximum and conduction band minimum and estimated the work function, band gap, ionization energy, and electron affinity as functions of the number of layers. We compare our quasiparticle band energies of TMDs with available experimental reports.
*This work is supported by the NRF of Korea (Grant No.2011-0018306). Computational resources have been provided by KISTI Supercomputing Center (Project No. KSC-2018-CRE-0097).
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Presenters
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Han-gyu Kim
- Department of Physics, Yonsei University, Seoul 03722, Korea