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DOI | 10.1126/science.aaz6149 |
Ultrahigh thermal conductivity in isotope-enriched cubic boron nitride | |
Chen K.; Song B.; Ravichandran N.K.; Zheng Q.; Chen X.; Lee H.; Sun H.; Li S.; Gamage G.A.G.U.; Tian F.; Ding Z.; Song Q.; Rai A.; Wu H.; Koirala P.; Schmidt A.J.; Watanabe K.; Lv B.; Ren Z.; Shi L.; Cahill D.G.; Taniguchi T.; Broido D.; Chen G. | |
发表日期 | 2020 |
ISSN | 0036-8075 |
起始页码 | 555 |
结束页码 | 559 |
卷号 | 367期号:6477 |
英文摘要 | Materials with high thermal conductivity (k) are of technological importance and fundamental interest. We grew cubic boron nitride (cBN) crystals with controlled abundance of boron isotopes and measured k 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 k is considerably lower for boron phosphide and boron arsenide as the identical isotopic mass disorder becomes increasingly invisible to phonons. The ultrahigh k 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. © 2020 American Association for the Advancement of Science. All rights reserved. |
关键词 | boron arsenideboron derivativeboron phosphidecubic boron nitrideisotopeunclassified drugconcentration (composition)inorganic compoundtemperature effectthermal conductivityArticlephononpriority journalthermal conductivityultrahigh thermal conductivity |
语种 | 英语 |
来源机构 | Science |
文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/133746 |
推荐引用方式 GB/T 7714 | Chen K.,Song B.,Ravichandran N.K.,et al. Ultrahigh thermal conductivity in isotope-enriched cubic boron nitride[J]. Science,2020,367(6477). |
APA | Chen K..,Song B..,Ravichandran N.K..,Zheng Q..,Chen X..,...&Chen G..(2020).Ultrahigh thermal conductivity in isotope-enriched cubic boron nitride.,367(6477). |
MLA | Chen K.,et al."Ultrahigh thermal conductivity in isotope-enriched cubic boron nitride".367.6477(2020). |
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