Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/173276
Título: Understanding the Potential of Light Absorption in Dots-in-Host Semiconductors
Autor: Alexandre, Miguel
Águas, Hugo
Fortunato, Elvira
Martins, Rodrigo
Mendes, Manuel J.
Palavras-chave: interband absorption
k.p method
multi-band solar cells
nanostructured semiconductors
quantum dots
Electronic, Optical and Magnetic Materials
Biotechnology
Atomic and Molecular Physics, and Optics
Electrical and Electronic Engineering
SDG 7 - Affordable and Clean Energy
Data: 16-Out-2024
Citação: Alexandre, M., Águas, H., Fortunato, E., Martins, R., & Mendes, M. J. (2024). Understanding the Potential of Light Absorption in Dots-in-Host Semiconductors. ACS Photonics, 11(10), 4048-4057. Advance online publication. https://doi.org/10.1021/acsphotonics.4c00760
Resumo: The outstanding physical properties of dots-in-host (QD@Host) hetero semiconductors demand detailed methods to fundamentally understand the best routes to optimize their potentialities for different applications. In this work, a 4-band k.p-based method was developed for rock-salt quantum dots (QDs) that describes the complete optical properties of arbitrary QD@Host systems, trailblazing the way for the full optoelectronic analysis of quantum-structured solar cells. Starting with the determination of the QD bandgap and validation against well-established literature results, the electron transition rate is then computed and analyzed against the main system parameters. This is followed by a multiparameter optimization, considering intermediate band solar cells as a promising application, where the best QD configuration was determined, together with the corresponding QD@Host absorption spectrum, in view of attaining the theoretical maximum efficiency (∼50%) of this photovoltaic technology. The results show the creation of pronounced sub-bandgap absorption due to the electronic transitions from/to the quantum-confined states, which enables a much broader exploitation of the sunlight spectrum.
Descrição: Publisher Copyright: © 2024 The Authors. Published by American Chemical Society.
Peer review: yes
URI: http://hdl.handle.net/10362/173276
DOI: https://doi.org/10.1021/acsphotonics.4c00760
ISSN: 2330-4022
Aparece nas colecções:FCT: DCM - Artigos em revista internacional com arbitragem científica

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