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Determining Bandgaps in the Layered Group-10 2D Transition Metal Dichalcogenide PtSe2

ORAL

Abstract

Group-10 TMDs such as PtSe2possess highly tuneable indirect bandgaps, transitioning from semiconducting in the near-infrared to semimetal behavior with a number of monolayers (MLs). This opens up the possibility of TMD-based mid-infrared and terahertz optoelectronics. Despite this large potential, the optical properties of such materials have shown an extremely large disparity between that predicted and measured. For example, simulations show that a few MLs is required for the semiconductor–semimetal transition, whilst tens of MLs is found experimentally. This is a result of widely used optical extrapolation methods to determine bandgaps, such as the Tauc plot approach, that are not adapted here owing to i) nearby direct transitions, ii) the material dimensionality and iii) large changes in the non-parabolic bandstructure with MLs. Here, uniquely combining optical ellipsometry to determine the complex permittivity, terahertz time resolved spectroscopy for the complex conductivity and in-depth density functional theory (DFT) simulations, it is shown that the optical properties and bandstructure can be determined reliably and demonstrate clearly that the semiconductor-semimetal transition occurs for PtSe2 layers ≈5 MLs. The microscopic origins of the observed transitions and the crucial role of the Coulomb interaction for thin semiconducting layers, and that of interlayer van der Waals forces for multilayer semimetallic samples are also demonstrated.

Publication: Published paper directly related to the work: M. Mičica, S. Ayari, M. Hemmat, M. Arfaoui, D. Vala, K. Postava, H. Vergnet, J. Tignon, J. Mangeney, S. Guo, X. Yu, Q. J. Wang, Z. Liu, S. Jaziri, F. Carosella, R. Ferreira, S. Dhillon, Determining Bandgaps in the Layered Group-10 2D Transition Metal Dichalcogenide PtSe2. Adv. Funct. Mater. 2024, 2408982.<br><br>Other published related paper:<br>Hemmat M, Ayari S, Mičica M, et al. Layer-controlled nonlinear terahertz valleytronics in two-dimensional semimetal and semiconductor PtSe2. InfoMat. 2023; 5(11):e12468. doi:10.1002/inf2.12468<br><br>1 other paper is submitter <br>1 paper is planned

Presenters

  • Francesca Carosella

    Ecole Normale Supérieure

Authors

  • Francesca Carosella

    Ecole Normale Supérieure

  • Sabrine Ayari

    Ecole Normale Supérieure

  • Martin Micica

    Ecole Normale Supérieure

  • Sukhdeep Dhillon

    Ecole Normale Supérieure

  • Robson Ferreira

    Ecole Normale Supérieure

  • Minoosh Hemmat

    Ecole Normale Supérieure