In this work, we present a comprehensive theoretical and experimental study of quantum confinement in layered platinum diselenide (PtSe2) films as a function of film thickness. Our electrical measurements, in combination with density functional theory calculations, show distinct layer-dependent semimetal-to-semiconductor evolution in PtSe2 films, and highlight the importance of including van der Waals interactions, Green’s function calibration, and screened Coulomb interactions in the determination of the thickness-dependent PtSe2 energy gap. Large-area PtSe2 films of varying thickness (2.5–6.5 nm) were formed at 400 °C by thermally assisted conversion of ultra-thin platinum films on Si/SiO2 substrates. The PtSe2 films exhibit p-type semico...
Abstract Platinum diselenide (PtSe2) has shown great potential as a candidate two‐dimensional (2D) m...
Two-dimensional (2D) layered materials are ideal for micro- and nanoelectromechanical systems (MEMS/...
Two-dimensional (2D) materials with single or few atomic layers have attracted significant attention...
In this work, we present a comprehensive theoretical and experimental study of quantum confinement i...
Platinum diselenide (PtSe2) is an exciting new member of the two-dimensional (2D) transition metal d...
Platinum diselenide (PtSe2) is one of the most studied materials of the emerging group-10 transition...
The layer dependent structural, electronic and vibrational properties of the 1T phase of two dimensi...
Semiconductive transition metal dichalcogenides (TMDs) have been considered as next generation semic...
Platinum diselenide (PtSe2) is a group-10 transition metal dichalcogenide (TMD) that has unique elec...
Platinum diselenide (PtSe2) is a group-10 transition metal dichalcogenide (TMD) that has unique elec...
Single-layer transition-metal dichalcogenides (TMDs) receive significant attention due to their intr...
Two-dimensional (2D) transition-metal dichalcogenides (2D TMDs) in the form of MX2 (M: transition me...
Owing to the relatively strong interlayer interaction, the platinum dichalcogenides exhibit tunabili...
Platinum diselenide (PtSe2) is a 2D material with outstanding electronic and piezoresistive properti...
Platinum diselenide (PtSe2) is one of the most studied materials of the emerging group-10 transition...
Abstract Platinum diselenide (PtSe2) has shown great potential as a candidate two‐dimensional (2D) m...
Two-dimensional (2D) layered materials are ideal for micro- and nanoelectromechanical systems (MEMS/...
Two-dimensional (2D) materials with single or few atomic layers have attracted significant attention...
In this work, we present a comprehensive theoretical and experimental study of quantum confinement i...
Platinum diselenide (PtSe2) is an exciting new member of the two-dimensional (2D) transition metal d...
Platinum diselenide (PtSe2) is one of the most studied materials of the emerging group-10 transition...
The layer dependent structural, electronic and vibrational properties of the 1T phase of two dimensi...
Semiconductive transition metal dichalcogenides (TMDs) have been considered as next generation semic...
Platinum diselenide (PtSe2) is a group-10 transition metal dichalcogenide (TMD) that has unique elec...
Platinum diselenide (PtSe2) is a group-10 transition metal dichalcogenide (TMD) that has unique elec...
Single-layer transition-metal dichalcogenides (TMDs) receive significant attention due to their intr...
Two-dimensional (2D) transition-metal dichalcogenides (2D TMDs) in the form of MX2 (M: transition me...
Owing to the relatively strong interlayer interaction, the platinum dichalcogenides exhibit tunabili...
Platinum diselenide (PtSe2) is a 2D material with outstanding electronic and piezoresistive properti...
Platinum diselenide (PtSe2) is one of the most studied materials of the emerging group-10 transition...
Abstract Platinum diselenide (PtSe2) has shown great potential as a candidate two‐dimensional (2D) m...
Two-dimensional (2D) layered materials are ideal for micro- and nanoelectromechanical systems (MEMS/...
Two-dimensional (2D) materials with single or few atomic layers have attracted significant attention...