Substrate-induced strain and exchange field effects on the electronic and thermal properties of monolayer β 12 -borophene

The recently uncovered two-dimensional materials serve as versatile building blocks for electronic devices. In this study, we methodically investigate the impact of substrate-induced strain and exchange field effects on the electronic density of states (EDOS) and electronic heat capacity (EHC) of si...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2024-02, Vol.26 (9), p.7611-7617
Hauptverfasser: Hoi, Bui Dinh, Phuong, Le Thi Thu, Dung, Pham Viet, Phong, Tran Cong
Format: Artikel
Sprache:eng
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Zusammenfassung:The recently uncovered two-dimensional materials serve as versatile building blocks for electronic devices. In this study, we methodically investigate the impact of substrate-induced strain and exchange field effects on the electronic density of states (EDOS) and electronic heat capacity (EHC) of single-layer β -borophene. Utilizing the Green's function approach, we compute these functions. The van Hove singularities in EDOS are observed to shift with strain, and depending on the direction and strength of the exchange field, the number of singularities increases. All these responses can be attributed to the renormalization of the velocity of electronic bands. Additionally, the inherent Schottky anomaly (an unusual peak at low temperatures) in the EHC undergoes a notable shift to higher and lower temperatures and variations in the intensity of the EHC due to substrate effects.
ISSN:1463-9076
1463-9084
DOI:10.1039/D3CP06225B