© 2019 Elsevier Ltd Boron arsenide (BAs) has recently attracted significant attention since the confirmation of its unusually high thermal conductivity (κ) above 1000 W m−1 K−1. However, determining how to grow BAs single crystals (SCs) on the centimeter scale remains unsolved, which strongly limits further research into, and potential applications of, this interesting material. Here, we report our technique to grow a 7-mm-long BAs SC via the chemical vapor transport method by applying heteronucleation sites. The different κ values obtained from BAs SCs grown on different heteronucleation sites show the importance of choosing the proper nucleation material. We believe these findings will inspire further research into the growth of this uniq...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
The crystal growth of boron arsenide and boron phosphide in the form of bulk crystals and epitaxial ...
© 2019 Elsevier Ltd Boron arsenide (BAs) has recently attracted significant attention since the conf...
Materials with high thermal conductivities are crucial to effectively cooling high-power-density ele...
With the rapid development of modern microelectronic devices, materials with high thermal conductivi...
Thermal management becomes a critical technological challenge in the modern microelectronics world, ...
With the rapid development of modern microelectronic devices, materials with high thermal conductivi...
© 2019 Elsevier Ltd Boron arsenide (BAs) with a zinc blende structure has recently been discovered t...
© 2019 Elsevier Ltd Boron arsenide (BAs) with a zinc blende structure has recently been discovered t...
Doctor of PhilosophyDepartment of Chemical EngineeringJames H. EdgarThe exceptional radiation resist...
In this paper, we present our progresses on single-crystal growth of a variety of compounds from new...
Recent calculations predict a super-thermal-conductivity of ∼2000 Wm-1K-1, comparable to that of dia...
International audienceCubic boron arsenide (BAs) is a promising compound semiconductor for thermal m...
Cubic boron arsenide (BAs) is a promising compound semiconductor for thermal management applications...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
The crystal growth of boron arsenide and boron phosphide in the form of bulk crystals and epitaxial ...
© 2019 Elsevier Ltd Boron arsenide (BAs) has recently attracted significant attention since the conf...
Materials with high thermal conductivities are crucial to effectively cooling high-power-density ele...
With the rapid development of modern microelectronic devices, materials with high thermal conductivi...
Thermal management becomes a critical technological challenge in the modern microelectronics world, ...
With the rapid development of modern microelectronic devices, materials with high thermal conductivi...
© 2019 Elsevier Ltd Boron arsenide (BAs) with a zinc blende structure has recently been discovered t...
© 2019 Elsevier Ltd Boron arsenide (BAs) with a zinc blende structure has recently been discovered t...
Doctor of PhilosophyDepartment of Chemical EngineeringJames H. EdgarThe exceptional radiation resist...
In this paper, we present our progresses on single-crystal growth of a variety of compounds from new...
Recent calculations predict a super-thermal-conductivity of ∼2000 Wm-1K-1, comparable to that of dia...
International audienceCubic boron arsenide (BAs) is a promising compound semiconductor for thermal m...
Cubic boron arsenide (BAs) is a promising compound semiconductor for thermal management applications...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
The crystal growth of boron arsenide and boron phosphide in the form of bulk crystals and epitaxial ...