With the rapid development of modern microelectronic devices, materials with high thermal conductivities are crucial to effectively cooling high-power-density electronic and optoelectronic devices due to the ever-shrinking dimensions and compacting units. In principle, heat is transferred via conduction, convection and radiation, of which directly conduction is the easiest and most efficient way. Nowadays, metal heat sinks are the most widely used in industry, due to their high thermal conductivities (200 - 500 W m-1 K-1). Meanwhile, the materials with higher thermal conductivities are so far restricted in laboratory research because of the difficulties in synthesis, high cost, or anisotropic conductivities. More related theories and design...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Materials with high thermal conductivities are crucial to effectively cooling high-power-density ele...
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) has recently attracted significant attention since the conf...
Recent calculations predict a super-thermal-conductivity of ∼2000 Wm-1K-1, comparable to that of dia...
© 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...
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...
High-thermal conductivity materials are useful for thermal management applications and fundamental s...
The ultrahigh thermal conductivity of cubic boron arsenide (BAs) makes it a promising material for n...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Materials with high thermal conductivities are crucial to effectively cooling high-power-density ele...
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) has recently attracted significant attention since the conf...
Recent calculations predict a super-thermal-conductivity of ∼2000 Wm-1K-1, comparable to that of dia...
© 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...
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...
High-thermal conductivity materials are useful for thermal management applications and fundamental s...
The ultrahigh thermal conductivity of cubic boron arsenide (BAs) makes it a promising material for n...
Materials with high thermal conductivity are of great importance to the thermal management of modern...
International audienceThe promise enabled by boron arsenide's (BAs) high thermal conductivity (κ) in...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Advanced materials with extreme thermal conductivity are critically important for various technologi...