论文标题
Fe $ _ {2} $ TISN的多级啤酒素合金的电子和热电特性的第一原理研究
First principle studies on electronic and thermoelectric properties of Fe$_{2}$TiSn based multinary Heusler alloys
论文作者
论文摘要
具有8/18/24价电子计数(VEC)的合金是有望在低和高温下进行有效的能量转化和制冷应用的候选者。 WIER2K代码中实现的全部潜在线性化增强平面波法用于研究电子结构和TE传输属性,并使用PBE $ -GGA和TB $ - $ MBJ交换潜力和Boltzmann运输理论。计算出的单晶弹性常数,状态的声子分散和声子密度证实了这些系统在机械上和动态稳定。 TE传输属性是通过包括从两种方法中从一种从计算出的弹性属性计算($κ^{弹性} _ {l} $)中获得的导热率($κ_{l} $)的晶格部分计算得出的。强大的声子$ - $声子散射在ti/sn站点的iSovalent/Aliovalent替换的大质量差/应变波动,fe $ _ {2} $ tisn降低了晶格的导热率,从而降低了高\ textit {zt}值的高度{zt}值为900 \ for的0.81,k for 900 \ for 900 \ for fe $ _ {2} $ sc $ _ {0.25} $ ti $ _ {0.5} $ ta $ _ {0.25} $ al $ _ {0.5} $ _ {0.5} $ bi $ $ _ {0.5} $。使用PBE $ - $ GGA和TB $ - $ MBJ函数计算出的TE传输属性的比较分析表明,发现从TB $ - $ MBJ方案获得的\ textIt {ZT}值大大高于基于PBE $ GGA的\ $ MBJ方案。计算出的相对较低的晶格导热率和高\ textit {ZT}值表明,Isovalent/Aliovalent替代的Fe $ _ {2} $ tisn是中等温度至高温废物热恢复的有希望的候选人。
The alloys with 8/18/24 valence electron count (VEC) are promising candidates for efficient energy conversion and refrigeration applications at low as well as high temperatures. The full potential linearized augmented plane wave method as implemented in WIEN2k code was used to investigate electronic structure and TE transport properties with the PBE$-$GGA and TB$-$mBJ exchange potentials and Boltzmann transport theory. The calculated single crystal elastic constants, phonon dispersion and phonon density of states confirm that these systems are mechanically and dynamically stable. The TE transport properties is calculated by including the lattice part of thermal conductivity ($κ_{L}$) obtained from two methods one from the calculated elastic properties calculation ($κ^{elastic}_{L}$) and the other from phonon dispersion curve ($κ^{phonon}_{L}$). The strong phonon$-$phonon scattering by large mass difference/strain fluctuation of isovalent/aliovalent substitution at Ti/Sn sites of Fe$_{2}$TiSn reduces the lattice thermal conductivity which results in high \textit{ZT} value of 0.81 at 900\,K for Fe$_{2}$Sc$_{0.25}$Ti$_{0.5}$Ta$_{0.25}$Al$_{0.5}$Bi$_{0.5}$. The comparative analysis of TE transport properties using the band structures calculated with the PBE$-$GGA and TB$-$mBJ functional shows that the \textit{ZT} value obtained from TB$-$mBJ scheme is found to be significantly higher than that based on PBE$-$GGA. The calculated relatively low lattice thermal conductivity and high \textit{ZT} values suggest that isovalent/aliovalent substituted Fe$_{2}$TiSn are promising candidates for medium to high temperature waste heat recovery.