Suppr超能文献

准二维 MoW(S, Se, Te) 单层合金的结构和热力学性质:统计第一性原理研究。

Structural and thermodynamic properties of quasi-2D MoW(S, Se, Te)monolayer alloys: a statistical first principle study.

机构信息

Departamento de Física, ICEx, Universidade Federal de Minas Gerais, Caixa Postal 702, CEP 31270-901, Belo Horizonte, Minas Gerais, Brazil.

Instituto de Ciências da Vida e da Natureza, Universidade Federal da Integração Latino-Americana, Caixa Postal 2044, Foz do Iguaçu, Brazil.

出版信息

Nanotechnology. 2023 Apr 21;34(27). doi: 10.1088/1361-6528/acc406.

Abstract

In this work, we report anstudy of the structural and thermodynamic properties of two-dimensional transition-metal dichalcogenides (2D-TMDC) alloys, MoW(S, Se, Te), using the cluster expansion framework to compute the Helmholtz free energy of alloys as a function of alloy composition and temperature, in the framework of the generalized quasi-chemical approximation. We consider alloying only on the metal sublayer. Our results indicate a weak dependence of the structural properties (lattice constants, nearest-neighbor bond lengths, and layer width) on the alloy composition (i.e. concentrations of W and Mo atoms), in line with the very similar values of the atomic radii of Mo and W atoms. A stronger dependence on the chalcogen is obtained, a trend that reflects the larger variations in atomic radii among the three chalcogen species. As a function of composition, the structural parameters we examined show similar trends, with negligible bowing (i.e. deviations from a Vegard's law interpolation between end compounds), for the three alloys. Moreover, already at 300 K the behavior of these structural features as a function of composition is very similar to that of the standard-regular-solution (SRS) high-temperature limit. In contrast, the electronic band gaps of the the three alloys as a function of composition show small but significant bowing, as high as -1% to -2% near the= 0.5 alloy composition. Similarly to the structural features, the band gaps attain the high-temperature SRS limit already at 300 K. Regarding thermodynamic properties, we obtain negative values of the internal energy of mixing for the three alloys over the full range of compositions. Therefore, the theoretical alloying phase diagram for the three alloys is featureless, with stability of a fully-mixed alloy at all temperatures and compositions, with no miscibility gap (hence no bimodal nor spinodal decomposition lines). The thermodynamic potentials (mixing internal energy, mixing entropy, and mixing free energy) reach the high-temperature limit at ∼1000 K, the temperature range of synthesis of 2D-TMDC alloys. These trends of structural and electronic properties of the 2D-TMDC alloys are due to the very similar atomic radii and the nearly identical coordination chemistry of Mo and W. Our results are in agreement with experimental work on the alloying of Mo and W atoms, for samples of MoWSmonolayer alloys, that found that the random mixed alloy is the thermodynamically stable state for this alloy, with no segregation or phase separation.

摘要

在这项工作中,我们使用团簇展开框架研究了二维过渡金属二卤族化合物(2D-TMDC)合金 MoW(S、Se、Te)的结构和热力学性质,以计算合金的亥姆霍兹自由能作为合金成分和温度的函数,在广义准化学近似的框架内。我们只考虑在金属亚层上的合金化。我们的结果表明,结构性质(晶格常数、最近邻键长和层宽)对合金成分(即 W 和 Mo 原子的浓度)的依赖性较弱,与 Mo 和 W 原子的原子半径非常相似。我们得到了对硫属元素更强的依赖性,这种趋势反映了三种硫属元素原子半径的较大变化。作为成分的函数,我们研究的结构参数表现出相似的趋势,对于三种合金,几乎没有翘曲(即偏离端化合物之间的维加德插值)。此外,在 300 K 时,这些结构特征随成分的变化行为与标准正则溶液(SRS)高温极限非常相似。相比之下,三种合金的能带隙随成分的变化表现出很小但显著的翘曲,在=0.5 合金成分附近高达-1%至-2%。与结构特征类似,带隙在 300 K 时已经达到了 SRS 高温极限。关于热力学性质,我们得到了三种合金在全成分范围内的混合内能为负。因此,三种合金的理论合金相图没有特征,在所有温度和成分下,完全混合的合金都是稳定的,没有混溶性间隙(因此没有双峰或旋节线分解线)。热力学势(混合内能、混合熵和混合自由能)在约 1000 K 时达到高温极限,这是 2D-TMDC 合金的合成温度范围。这些二维 TMDC 合金的结构和电子性质的趋势归因于 Mo 和 W 非常相似的原子半径和几乎相同的配位化学。我们的结果与 Mo 和 W 原子合金的实验工作一致,对于 MoWS 单层合金的样品,发现随机混合的合金是该合金的热力学稳定状态,没有分凝或相分离。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验