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首页> 外文期刊>Journal of Materials Research and Technology >First-principle computations of ferromagnetic HgCr 2Z 4 (Z?=?S, Se) spinels for spintronic and energy storage system applications
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First-principle computations of ferromagnetic HgCr 2Z 4 (Z?=?S, Se) spinels for spintronic and energy storage system applications

机译:Ferromagnetic HGCR 2> 2 Z 4 (Z?=?S,SE )用于旋转和储能系统应用的尖晶石

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We explored electronic spin-dependent physical aspects of ferromagnetic HgCr2Z4(Z?=?S, Se) spinels using density functional theory (DFT) for spintronic and energy storage applications. In calculations of structural, electronic, magnetic, and transport aspects, we used Perdew–Burke–Ernzerhof generalized gradient approximation (PBEsol GGA) plus modified Becke-Johnson (mBJ) potential. To calculate structural parameters, we optimized both spinels in the ferromagnetic phase and our predicted data of structural parameters show good comparison with existing experimental data. Also, the calculated negative formation energy confirms the structural stability of the studied spinels. Analyzing ferromagnetic nature of studied spinels based on exchange splitting energy and magnetic parameters, we used mBJ potential to calculate band structure (BS) and density of states (DOS). By exploring DOS, we found the dominant role of electrons spin has been shown by negative indirect exchange energy Δx(pd) values and the fulfillment of the condition Δx(d)?>?ΔEcry. In addition, exchange constants (N0α and N0β) and magnetic moments were also calculated to ensure their ferromagnetism in studied spinels. Further, the exploration for the influence of electrons spin on electronic transport aspects has been done by investigating electrical and thermal conductivities, Seebeck coefficient, and power factor by using classical Boltzmann transport theory.
机译:我们使用密度泛函理论(DFT)探索了铁磁HGCR2Z4(Z?=ΔS,SE)尖晶石的电子自旋依赖性物理方面,用于旋转反应和储能应用。在结构,电子,磁性和运输方面的计算中,我们使用Perdew-Burke-Ernzerhof广义梯度近似(Pbesol GGA)加修改的Becke-Johnson(MBJ)潜力。为了计算结构参数,我们在铁磁相中优化了两个尖晶石,我们的结构参数的预测数据显示了与现有的实验数据的良好比较。而且,计算的负片能量确认了所研究的尖晶石的结构稳定性。基于交换分裂能量和磁性参数的研究尖晶石的铁磁性质分析,我们使用MBJ电位计算频带结构(BS)和状态密度(DOS)。通过探索DOS,我们发现了电子旋转的主导作用已经通过负面间接交换能量ΔX(PD)值以及条件ΔX(D)的满足来显示Δxαecry。另外,还计算了交换常数(N0α和N0β)和磁性时刻以确保其研究尖晶石中的铁磁性。此外,通过使用经典Boltzmann运输理论来研究电气和导热性,塞贝克系数和功率因数,对电子传输方面对电子传输方面的影响的探测。

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