论文标题

高温陶瓷Zrb $ _2 $和hfb $ _2 $中的独立强度音子散射

Site independent strong phonon-vacancy scattering in high temperature ceramics ZrB$_2$ and HfB$_2$

论文作者

Sonar, Vrishali, Dehankar, Rohan, Vijayalakshmi, K. P., Mingo, Natalio, Katre, Ankita

论文摘要

报告了金属和硼空缺对Zrb $ _2 $和HFB $ _2 $的声子散射和晶格导热率($κ_l$)的类似影响。这些缺陷挑战了传统的理解,即将更大的影响与更大的缺陷相关联。我们发现,根本的理由是由硼空缺引起的强大局部扰动,它实质上改变了原子间力常数。相比之下,在金属空缺的情况下,看到了长期范围但较弱的扰动。我们表明,这些行为源于金属二吡啶的混合金属和共价键合。热传输计算是基于Boltzmann传输方程和密度功能理论的完整\ textit {ab intio}框架进行的。使用\ textit {ab initio} green的功能方法计算了声子视口散射。天然同位素和晶界对$κ_l$的影响也有系统地研究,但是我们发现空缺的有影响力的作用来解释实验中看到的大变化。我们进一步报告了无定形和纯晶体极限之间的两阶差异。我们的结果概述了这些多功能高温陶瓷的重要材料设计方面。

Similar effects of metal and boron vacancies on phonon scattering and lattice thermal conductivity ($κ_l$) of ZrB$_2$ and HfB$_2$ are reported. These defects challenge the conventional understanding that associates larger impacts to bigger defects. We find the underlying reason to be a strong local perturbation caused by the boron vacancy that substantially changes the interatomic force constants. In contrast, a long ranged but weaker perturbation is seen in the case metal vacancies. We show that these behaviours originate from a mixed metallic and covalent bonding nature in the metal diborides. The thermal transport calculations are performed in a complete \textit{ab initio} framework based on Boltzmann transport equation and density functional theory. Phonon-vacancy scattering is calculated using \textit{ab initio} Green's function approach. Effects of natural isotopes and grain boundaries on $κ_l$ are also systematically investigated, however we find an influential role of vacancies to explain large variations seen in the experiments. We further report a two-order of magnitude difference between the amorphous and pure-crystal limits. Our results outline significant material design aspects for these multi-functional high temperature ceramics.

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