Boron phosphide has recently been identified as a potential high-hole-mobility transparent conducting material. This promise arises from its low hole effective masses. However, boron phosphide has a relatively small, 2 eV, indirect bandgap which will affect its transparency. In this work, we computationally study both optical absorption across the indirect gap and phonon-limited electronic transport to quantify the potential of boron phosphide as a p-type transparent conductor. We find that phonon-mediated indirect optical absorption is weak in the visible spectrum and that the phonon-limited hole mobility is very high (around 900 cm2/Vs) at room temperature. This exceptional mobility comes from the combination of a low hole effective mass ...
Transparent conducting oxides (TCOs) are essential to many technologies. These materials are doped (...
High-performance p-type transparent conducting materials (TCMs) must exhibit a rare combination of p...
Recent years have witnessed the rapidly growing interests in the rediscovered black phosphorus (BP),...
Boron phosphide has recently been identified as a potential high-hole-mobility transparent conductin...
Boron phosphide has recently been identified as a potential high-hole-mobility transparent conductin...
High-performance p-type transparent conducting materials (TCMs) are needed in a wide range of applic...
With an indirect band gap in the visible and a direct band gap at a much higher energy, boron phosph...
Through first-principles calculations, the phonon-limited transport properties of cubic boron-V comp...
In this thesis, we investigate transparent conducting materials (TCMs) which are the need of many mo...
Phosphides are interesting candidates for hole transport materials and p-type transparent conducting...
Phosphides are interesting candidates for hole transport materials and p type transparent conducting...
Transparent conducting materials are an essential component of optoelectronic devices. It is proven ...
One key challenge in developing postsilicon electronic technology is to find ultrathin channel mater...
Since the discovery of graphene, two-dimensional (2D) van der Waals materials research has flourishe...
A high saturation velocity semiconductor is appealing for applications in electronics and optoelectr...
Transparent conducting oxides (TCOs) are essential to many technologies. These materials are doped (...
High-performance p-type transparent conducting materials (TCMs) must exhibit a rare combination of p...
Recent years have witnessed the rapidly growing interests in the rediscovered black phosphorus (BP),...
Boron phosphide has recently been identified as a potential high-hole-mobility transparent conductin...
Boron phosphide has recently been identified as a potential high-hole-mobility transparent conductin...
High-performance p-type transparent conducting materials (TCMs) are needed in a wide range of applic...
With an indirect band gap in the visible and a direct band gap at a much higher energy, boron phosph...
Through first-principles calculations, the phonon-limited transport properties of cubic boron-V comp...
In this thesis, we investigate transparent conducting materials (TCMs) which are the need of many mo...
Phosphides are interesting candidates for hole transport materials and p-type transparent conducting...
Phosphides are interesting candidates for hole transport materials and p type transparent conducting...
Transparent conducting materials are an essential component of optoelectronic devices. It is proven ...
One key challenge in developing postsilicon electronic technology is to find ultrathin channel mater...
Since the discovery of graphene, two-dimensional (2D) van der Waals materials research has flourishe...
A high saturation velocity semiconductor is appealing for applications in electronics and optoelectr...
Transparent conducting oxides (TCOs) are essential to many technologies. These materials are doped (...
High-performance p-type transparent conducting materials (TCMs) must exhibit a rare combination of p...
Recent years have witnessed the rapidly growing interests in the rediscovered black phosphorus (BP),...