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First-Principles Calculation of Phase Stability and Cohesive Properties of Ni-Sn Intermetallics

机译:Ni-Sn金属间化合物的相稳定性和内聚性能的第一性原理计算

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The cohesive properties of Ni-Sn intermetallics (stable, metastable, and virtual), hitherto unexplored by density-functional theory (DFT) methods, are reported. Specifically, the total energies and cohesive properties of Ni, Sn, and 27 Ni-Sn intermetallics are calculated from first-principles, using ultrasoft pseudopotentials (USPP) and both local-density approximation (LDA) and generalized-gradient approximation (GGA) for the exchange-correlation functional. Among the intermetallics considered, the ground-state structures are consistent with experimental observations; however, not all of them are registered in the equilibrium-phase diagram. An important result of this systematic study, using both USPP-LDA and USPP-GGA, is that oC20-NiSn4 is predicted to be the ground-state structure. Only recently, this phase has been observed as a product of the interfacial reaction in Ni/Sn diffusion couples. In addition, we find that the thermodynamic stability of a tetragonal phase, tP10-NiSn4, is very similar to that of oC20-NiSn4. The elastic stability of both tP10-NiSn4 and oC20-NiSn4 is confirmed by calculating their single-crystal elastic constants. The calorimetric data for the enthalpy of formation of stable intermetallics show an agreement that is better for those calculated with USPP-LDA than those calculated with USPP-GGA. In general, the experimental lattice parameters of stable and metastable phases are found to lie between those calculated using USPP-LDA and those calculated using USPP-GGA; however, in several cases, the values calculated using USPP-GGA agree to within 1 pct of the experimental data. The Ni3Sn2(ht) ? Ni3Sn2(lt) transformation is discussed in terms of supergroup-subgroup relations. The bonding between the Ni and the Sn is discussed based on the analyses of the density of states (DOS) and the charge densities.
机译:据报道,迄今尚未通过密度泛函理论(DFT)方法探索的Ni-Sn金属间化合物(稳定,亚稳态和虚拟)的内聚性能。具体来说,Ni,Sn和27个Ni-Sn金属间化合物的总能和内聚性是使用超软伪势(USPP)以及局部密度近似(LDA)和广义梯度近似(GGA)根据第一原理计算的交换相关功能。在考虑的金属间化合物中,基态结构与实验观察结果一致。但是,并不是所有的平衡态图都记录了它们。使用USPP-LDA和USPP-GGA进行的这项系统研究的重要结果是,预测oC20-NiSn4 是基态结构。直到最近,该相仍被视为是Ni / Sn扩散对中界面反应的产物。此外,我们发现四方相tP10-NiSn4的热力学稳定性与oC20-NiSn4的热力学稳定性非常相似。通过计算tP10-NiSn4 和oC20-NiSn4 的单晶弹性常数,可以确定其弹性稳定性。稳定的金属间化合物形成焓的量热数据表明,对于使用USPP-LDA计算的结果,与使用USPP-GGA计算的结果更好的一致性。通常,发现稳定相和亚稳相的实验晶格参数介于使用USPP-LDA计算的参数和使用USPP-GGA计算的参数之间。但是,在某些情况下,使用USPP-GGA计算的值在实验数据的1%之内。 Ni3 Sn2 (ht)吗?从超群-亚群关系的角度讨论了Ni3 Sn2 (lt)变换。基于状态密度(DOS)和电荷密度的分析,讨论了Ni和Sn之间的键合。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第1期|4-23|共20页
  • 作者

    G. Ghosh;

  • 作者单位

    Department of Materials Science and Engineering Robert R. McCormick School of Engineering and Applied Science Northwestern University Evanston IL 60208-3108 USA;

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  • 正文语种 eng
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