首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Prediction of stable Cu-Li binary intermetallics from first-principles calculations: Stoichiometries, crystal structures, and physical properties
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Prediction of stable Cu-Li binary intermetallics from first-principles calculations: Stoichiometries, crystal structures, and physical properties

机译:第一原理计算中稳定Cu-Li二元金属间金属间金属间金属间化合物的预测:化学测定物,晶体结构和物理性质

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Towards a resolution of the longstanding controversy regarding the existence of Cu-Li intermetallic compounds, we extensively investigate the phase stability of Cu-Li intermetallics with various possible stoichiometries at zero temperature and pressure using a global structure searching method. It is found that Cu-Li intermetallics can exist stably at atmospheric pressure, and three stable phases (Fmmm Cu1Li2, Fd (3) over barm Cu2Li1, and P (1) over bar Cu7Li1) are identified. Electronic structure analysis reveals that although they are metallic, covalent Cu-Cu and ionic Cu-Li bonds are found in the three structures. Moreover, the 3d states of copper atoms are mostly responsible for bond formations in the stable phases predicted. For all the predicted Cu-Li intermetallics, the effect of Cu concentration on structure, mechanical and thermodynamic properties are calculated systematically. It is found that the copper atoms in Cu-Li intermetallics trend to form covalent bonds, so more covalent bonds are formed as Cu content increases, leading to the increases in the elastic moduli, Vicker hardness and Debye temperature with Cu content on the whole. The Poisson's ratios of Cu-Li intermetallics vary in the range of 0.25 and 0.35, and most of Cu-Li intermetallics exhibit an excellent ductile property. The elastic anisotropy calculations suggest that all the Cu-Li intermetallics show anisotropic elasticity more or less, and the percentage anisotropy in compressibility is smaller than that in shear for each of the predicted Cu-Li compounds. (C) 2018 Elsevier B.V. All rights reserved.
机译:朝着关于Cu-Li金属间化合物存在的长期争议的解决方案,我们使用全球结构搜索方法在零温度和压力下进行Cu-li金属间质的相位稳定性。结果发现铜金属间化合物锂可在大气压下稳定存在,并且三个稳定相(Fmmm Cu1Li2,FD(3)过酵母Cu2Li1,和P(1)在巴Cu7Li1)被识别。电子结构分析显示,尽管它们是金属,但在三个结构中发现了共价Cu-Cu和离子Cu-Li键。此外,铜原子的3D状态主要负责预测的稳定相中的粘合形成。对于所有预测的Cu-Li金属间金属间金属间,系统地计算Cu浓度对结构,机械和热力学性质的影响。结果发现Cu-Li金属间金属间金属间金属间的铜原子形成共价键,因此形成更多的共价键作为Cu含量的增加,导致弹性模量,维氏硬度和德细温度随整体上的Cu含量增加。泊松Cu-Li金属间金属间金属间的比率在0.25和0.35的范围内变化,Cu-Li金属间金属间的大部分都表现出优异的延展性。弹性各向异性计算表明,所有Cu-Li金属间金属间质量或多或少地显示各向异性弹性,并且压缩性的各向异性百分比小于每个预测的Cu-Li化合物的剪切中的各向异性。 (c)2018年elestvier b.v.保留所有权利。

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