Ultrahigh thermal conductivity in isotope-enriched cubic boron nitride
Date Published |
01/2020
|
---|---|
Publication Type | Journal Article
|
Authors | |
---|---|
DOI |
10.1126/science.aaz6149
|
Abstract |
Materials with high thermal conductivity (κ) are of technological importance and fundamental interest. We grew cubic boron nitride (cBN) crystals with controlled abundance of boron isotopes and measured κ greater than 1600 watts per meter-kelvin at room temperature in samples with enriched 10B or 11B. In comparison, we found that the isotope enhancement of κ is considerably lower for boron phosphide and boron arsenide as the identical isotopic mass disorder becomes increasingly invisible to phonons. The ultrahigh κ in conjunction with its wide bandgap (6.2 electron volts) makes cBN a promising material for microelectronics thermal management, high-power electronics, and optoelectronics applications. |
Journal |
Science
|
Volume |
367
|
Year of Publication |
2020
|
Issue |
6477
|
Pagination |
555 - 559
|
ISSN Number |
0036-8075
|
Short Title |
Science
|
Refereed Designation |
Refereed
|
Organizations | |
Download citation |