We exploited novel two-dimensional (2D) carbon selenide (CSe) with a structure analogous to phosphorene, and probed its electronics and optoelectronics. Calculating phonon spectra using the density functional perturbation theory (DFPT) method indicated that 2D CSe possesses dynamic stability, which made it possible to tune and equip CSe with outstanding properties by way of X-doping (X = O, S, Te), i.e., X substituting Se atoms. Then systematic investigation on the structural, electronic, and optical properties of pristine and X-doped monolayer CSe was carried out using the density functional theory (DFT) method. It was found that the bonding feature of C-X is intimately associated with the electronegativity and radius of the doping atoms, ...
Since the discovery of graphene, a new era of physics called Two Dimensional (2D)Materials has eme...
The performance of molecular materials in optoelectronic devices critically depends upon their elect...
The performance of molecular materials in optoelectronic devices critically depends upon their elect...
We exploited novel two-dimensional (2D) carbon selenide (CSe) with a structure analogous to phosphor...
Recent advancements in CdTe photovoltaic eciency have come from selenium grading, which reduces the ...
Recent advancements in CdTe photovoltaic eciency have come from selenium grading, which reduces the ...
Recent advancements in CdTe photovoltaic eciency have come from selenium grading, which reduces the ...
Single-layered tin selenide that shares the same structure with phosphorene and possesses intriguing...
One of the least known compounds among transition metal dichalcogenides (TMDCs) is the layered tricl...
One of the least known compounds among transition metal dichalcogenides (TMDCs) is the layered tricl...
One of the least known compounds among transition metal dichalcogenides (TMDCs) is the layered tricl...
Tin selenide (SnSe) has thermoelectric (TE) and photovoltaic (PV) applications due to its exceptiona...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
key objective of chemistry is to rearrange the bonding configuration of atoms in order to arrive at ...
Since the discovery of graphene, a new era of physics called Two Dimensional (2D)Materials has eme...
The performance of molecular materials in optoelectronic devices critically depends upon their elect...
The performance of molecular materials in optoelectronic devices critically depends upon their elect...
We exploited novel two-dimensional (2D) carbon selenide (CSe) with a structure analogous to phosphor...
Recent advancements in CdTe photovoltaic eciency have come from selenium grading, which reduces the ...
Recent advancements in CdTe photovoltaic eciency have come from selenium grading, which reduces the ...
Recent advancements in CdTe photovoltaic eciency have come from selenium grading, which reduces the ...
Single-layered tin selenide that shares the same structure with phosphorene and possesses intriguing...
One of the least known compounds among transition metal dichalcogenides (TMDCs) is the layered tricl...
One of the least known compounds among transition metal dichalcogenides (TMDCs) is the layered tricl...
One of the least known compounds among transition metal dichalcogenides (TMDCs) is the layered tricl...
Tin selenide (SnSe) has thermoelectric (TE) and photovoltaic (PV) applications due to its exceptiona...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
Palladium selenides have attracted considerable attention because of their intriguing properties and...
key objective of chemistry is to rearrange the bonding configuration of atoms in order to arrive at ...
Since the discovery of graphene, a new era of physics called Two Dimensional (2D)Materials has eme...
The performance of molecular materials in optoelectronic devices critically depends upon their elect...
The performance of molecular materials in optoelectronic devices critically depends upon their elect...