二维Be同素异形体和碱土类似物(Mg, Ca, Sr, Ba)的第一性原理预测:从六方二维beryllene到IIA Xenes

IF 3.2 3区 化学 Q2 CHEMISTRY, PHYSICAL
Heng Zhang, Frédéric Guégan, Sylvain Pitié, Busheng Wang, Congxin Xia, Gilles Frapper
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引用次数: 0

摘要

通过从头算进化算法系统地探索了二维元素铍(beryllene)的化学空间,揭示了丰富的多态性。我们确定了8个不同的同素异形体(α: P6/mmm, Z = 1; β: P3′m1, Z = 2; γ: P6′m2, Z = 3; δ: P3′m1, Z = 3; ε: P2/m, Z = 8; ζ: Pmma, Z = 4; η: P4/mmm, Z = 3; θ: P2/m, Z = 5),表现出优异的热力学、力学、动力学和热稳定性。ε-相,ζ-相,η-相和θ-相是新预测的。对β相和γ相Be3中心的电子定位函数的分析表明,它符合3-中心-2-电子成键的特征,而不是电化物的特征。此外,还鉴定了32个稳定的块体衍生2D板,其中(001)板由于其较低的形成焓(0.069-0.799 eV/原子)和解理能(0.089-0.113 eV/Å2)而具有较好的实验可行性。将这八种同素异形体延伸到其他IIA族金属中,在γ, δ, ε和ζ原型中产生了16种新的2D Xenes(镁烯,钙烯,强铁,裸烯)。这项工作强调了二维IIA族金属的多态性,并为其合成提供了关键的理论见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

First-Principles Prediction of Two-Dimensional Be Allotropes and Alkaline-Earth Analogues (Mg, Ca, Sr, and Ba): from Hexagonal 2D Beryllenes to IIA Xenes

First-Principles Prediction of Two-Dimensional Be Allotropes and Alkaline-Earth Analogues (Mg, Ca, Sr, and Ba): from Hexagonal 2D Beryllenes to IIA Xenes
The chemical space of two-dimensional (2D) elemental beryllium (beryllene) was systematically explored via an ab initio evolutionary algorithm, revealing a rich polymorphism. We identified eight distinct allotropes (α: P6/mmm, Z = 1; β: Pm1, Z = 2; γ: Pm2, Z = 3; δ: Pm1, Z = 3; ε: P2/m, Z = 8; ζ: Pmma, Z = 4; η: P4/mmm, Z = 3; θ: P2/m, Z = 5) exhibiting excellent thermodynamic, mechanical, dynamical, and thermal stability. The ε-, ζ-, η-, and θ-beryllene phases are newly predicted. Analysis of the electron localization function at Be3 centers in the β and γ phases proves to be consistent with 3-center-2-electron bonding rather than electride character. Additionally, thirty-two stable bulk-derived 2D slabs were identified, with the (001) slabs demonstrating superior experimental feasibility due to their low formation enthalpies (0.069–0.799 eV/atom) and cleavage energies (0.089–0.113 eV/Å2). Extending these eight beryllene allotropes to other Group IIA metals yielded 16 new 2D Xenes (magnesene, calcene, strontene, barene) within the γ, δ, ε, and ζ prototypes. This work underscores the polymorphism of 2D Group IIA metals and provides critical theoretical insights into their synthesis.
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来源期刊
The Journal of Physical Chemistry C
The Journal of Physical Chemistry C 化学-材料科学:综合
CiteScore
6.50
自引率
8.10%
发文量
2047
审稿时长
1.8 months
期刊介绍: The Journal of Physical Chemistry A/B/C is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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