Semantic Scholar Open Access 2024 6 sitasi

Electronic structure methods for simulating the applied potential in semiconductor electrochemistry

Kayvan Moradi Marko M. Melander

Abstrak

Semiconductor electrodes (SCEs) play a decisive role in e.g. clean energy conversion technologies but understanding their complex electrochemistry remains an outstanding challenge. Herein, we review electronic structure meth-ods for describing the applied electrode potential in simulations of semiconductor-electrolyte interfaces. We emphasize that inclusion of the electrode potential is significantly more challenging for SCEs than for metallic electrodes because SCEs require accurate models of semiconductor capacitance, including the space-charge region and surface effects, as well as the electrolyte double-layer capacitance. We discuss how these physicochemical complications challenge the development of atomistic models of SCE and how they impact the applicability of the computational hydrogen electrode, capacitance correction, grand canonical DFT, and Green function methods to model SCEs. We highlight the need for continued methodological development and conclude that integrating advanced atomistic models of SCEs with grand canonical, constant inner potential DFT or Green function methods holds promise for accurate SCE simulations.

Penulis (2)

K

Kayvan Moradi

M

Marko M. Melander

Format Sitasi

Moradi, K., Melander, M.M. (2024). Electronic structure methods for simulating the applied potential in semiconductor electrochemistry. https://doi.org/10.1016/j.coelec.2024.101615

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Informasi Jurnal
Tahun Terbit
2024
Bahasa
en
Total Sitasi
Sumber Database
Semantic Scholar
DOI
10.1016/j.coelec.2024.101615
Akses
Open Access ✓