Solar energy harvesting by a PtS/ZrS van der Waals heterostructure

In this study, the photovoltaic performance of van der Waals heterostructure (v-HS) PtS 2 /ZrS 2 has been examined using density functional theory based on first-principle calculations. Out of six possible configurations of v-HS of PtS 2 /ZrS 2 , the most stable configuration of v-HS of PtS 2 /ZrS 2...

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Veröffentlicht in:New journal of chemistry 2023-08, Vol.47 (32), p.15162-15174
Hauptverfasser: Parmar, P. R, Khengar, S. J, Mehta, Disha, Sonvane, Yogesh, Thakor, P. B
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Zusammenfassung:In this study, the photovoltaic performance of van der Waals heterostructure (v-HS) PtS 2 /ZrS 2 has been examined using density functional theory based on first-principle calculations. Out of six possible configurations of v-HS of PtS 2 /ZrS 2 , the most stable configuration of v-HS of PtS 2 /ZrS 2 has been identified based on adhesion energy and phonon dispersion relation. The Heyd-Scuseria-Ernzerhof functional has been employed for the calculation of the electronic properties, which has shown that the v-HS PtS 2 /ZrS 2 possesses a type II indirect band gap. The results based on the absorption coefficient have indicated that the v-HS of PtS 2 /ZrS 2 has enhanced absorption when compared to its constituent monolayers PtS 2 and ZrS 2 , with absorption starting from the visible region of the electromagnetic spectrum and achieves the highest value in the ultraviolet region of the electromagnetic spectrum. Solar parameters have been calculated using the Shockley-Queisser method, and the v-HS of PtS 2 /ZrS 2 has been found to exhibit enhanced photovoltaic performance when compared to monolayers PtS 2 and ZrS 2 . These findings suggest that the material has potential applications in both photovoltaics and optoelectronic devices as well as its other applications. First principle calculations of PtS 2 /ZrS 2 van der Waals heterostructure to design efficient photovoltaic devices for promising renewable energy applications.
ISSN:1144-0546
1369-9261
DOI:10.1039/d3nj01820b