Prakash Roshme, Kalpana G
Department of Physics, Anna University Chennai 600025 India
RSC Adv. 2023 Apr 5;13(16):10847-10860. doi: 10.1039/d3ra00942d. eCollection 2023 Apr 3.
This work aims are studying new and unique Fe-based quaternary Heusler alloys for data storage, energy conversion and optoelectronics applications. The structural, magnetic, mechanical, electrical, thermal, and optical properties of novel FeCrYZ (Y = Ti, Zr, & Hf and Z = Sn, and Sb) alloys have been theoretically explored making use of density functional theory (DFT). Except for FeCrHfSb, all the alloys are found to exhibit a stable ferromagnetic ground state during the energy minimization process, also half metallic ferromagnetism exhibiting 100% spin-polarization at the Fermi level obeying Slater-Pauling rule with total integer magnetic moments of 2.00 and 1.00 respectively. FeCrTiSn, FeCrTiSb and FeCrZrSb alloys have mechanical and dynamical stability under ambient conditions. Boltzmann transport theory was used to investigate the thermoelectric performance of the materials in the temperature range of 100-900 K. The estimated dimensionless figure of merit () for FeCrTiSb is 1.76, FeCrZrSb is 0.61, and FeCrHfSb is 0.86 at 900 K. Optical spectra reveal that absorption occurs across the visible and near UV ranges of the region. Results show that the narrow bandgap, spin polarization and high value of FeCrTiSb make it a promising candidate for spintronic, thermoelectric and optoelectronic applications.
这项工作旨在研究用于数据存储、能量转换和光电子应用的新型独特铁基四元赫斯勒合金。利用密度泛函理论(DFT)从理论上探索了新型FeCrYZ(Y = Ti、Zr和Hf,Z = Sn和Sb)合金的结构、磁性、机械、电学、热学和光学性质。除FeCrHfSb外,所有合金在能量最小化过程中均表现出稳定的铁磁基态,同时还表现出半金属铁磁性,在费米能级处呈现100%的自旋极化,遵循斯莱特-泡利规则,总整数磁矩分别为2.00和1.00。FeCrTiSn、FeCrTiSb和FeCrZrSb合金在环境条件下具有机械和动力学稳定性。采用玻尔兹曼输运理论研究了材料在100 - 900 K温度范围内的热电性能。在900 K时,FeCrTiSb的无量纲品质因数()估计为1.76,FeCrZrSb为0.61,FeCrHfSb为0.86。光谱表明,吸收发生在该区域的可见光和近紫外范围内。结果表明,FeCrTiSb的窄带隙、自旋极化和高值使其成为自旋电子学、热电和光电子应用的有前途的候选材料。