Through first-principles calculations, the phonon-limited transport properties of cubic boron-V compounds (BP, BAs, and BSb) are studied. We find that the high optical phonon frequency in these compounds leads to the substantial suppression of polar scattering and the reduction of intervalley transition mediated by large-wave-vector optical phonons, both of which significantly facilitate charge transport. We also discover that BAs simultaneously has a high hole mobility (2110cm[superscript 2]/Vs) and electron mobility (1400cm[superscript 2]/Vs) at room temperature, which is rare in semiconductors. Our findings present insight into searching high mobility polar semiconductors, and point to BAs as a promising material for electronic and photo...
High carrier mobility is often invoked to justify the exceptionally long diffusion length in CH3NH3P...
Thermal management becomes a critical technological challenge in the modern microelectronics world, ...
Cubic boron arsenide (BAs) is a promising compound semiconductor for thermal management applications...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
The ultrahigh thermal conductivity of cubic boron arsenide (BAs) makes it a promising material for n...
International audienceCubic boron arsenide (BAs) is a promising compound semiconductor for thermal m...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
Due to its large in-plane thermal conductivity, high temperature and chemical stability, large energ...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
© 2019 American Physical Society. The high thermal conductivity of boron arsenide (BAs) makes it a p...
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...
Boron phosphide has recently been identified as a potential high-hole-mobility transparent conductin...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
We have employed the ab initio plane-wave pseudopotential method, within a local-density approximati...
High carrier mobility is often invoked to justify the exceptionally long diffusion length in CH3NH3P...
Thermal management becomes a critical technological challenge in the modern microelectronics world, ...
Cubic boron arsenide (BAs) is a promising compound semiconductor for thermal management applications...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
The ultrahigh thermal conductivity of cubic boron arsenide (BAs) makes it a promising material for n...
International audienceCubic boron arsenide (BAs) is a promising compound semiconductor for thermal m...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
Due to its large in-plane thermal conductivity, high temperature and chemical stability, large energ...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
© 2019 American Physical Society. The high thermal conductivity of boron arsenide (BAs) makes it a p...
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...
Boron phosphide has recently been identified as a potential high-hole-mobility transparent conductin...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
We have employed the ab initio plane-wave pseudopotential method, within a local-density approximati...
High carrier mobility is often invoked to justify the exceptionally long diffusion length in CH3NH3P...
Thermal management becomes a critical technological challenge in the modern microelectronics world, ...
Cubic boron arsenide (BAs) is a promising compound semiconductor for thermal management applications...