Abstract:In this work, with the aid of a five-band tight-binding Hamiltonian, the Green's function approach and the Kubo–Greenwood formalism, the electronic thermal conductivity of the semiconducting phase of β12-borophene is studied.
“…For instance, introducing an external perpendicular electric field has been demonstrated to create a gap, resulting in either an electron-or hole-doped semiconducting phase. [30][31][32][33] Adamska and Sharifizadeh utilized mechanical strain to manipulate the optical absorption spectrum. 34 Lherbier et al explored the impact of oxidation on borophene's optical and electronic properties.…”
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...
“…For instance, introducing an external perpendicular electric field has been demonstrated to create a gap, resulting in either an electron-or hole-doped semiconducting phase. [30][31][32][33] Adamska and Sharifizadeh utilized mechanical strain to manipulate the optical absorption spectrum. 34 Lherbier et al explored the impact of oxidation on borophene's optical and electronic properties.…”
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...
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