论文标题

使用自一致的哈伯德参数对二维铁电的第一原理研究

First-Principles Study of Two-Dimensional Ferroelectrics Using Self-Consistent Hubbard Parameters

论文作者

Huang, Jiawei, Lee, Sang-Hoon, Supka, Andrew, Son, Young-Woo, Liu, Shi

论文摘要

发现具有可切换自发极化的二维(2D)材料,具有原子厚度,为实现超薄,高密度的电子设备的激动人心的机会提供了潜在的应用,从记忆和传感器到光催化和太阳能电池的潜在应用。基于密度功能理论(DFT)的第一原理方法促进了2D铁电(FES)的发现和设计。但是,采用局部和半社交交换功能的DFT计算无法准确预测该低维材料家族的带隙。在这里,我们提出了DFT+$ U $+$ V $在2D FES上的研究,由单层$α$ -in $ _2 $ _2 $ _2 $ se $ _3 $及其同源III $ _2 $ -VI $ -VI $ -VI $ _3 $化合物均使用超平面和平面极化,使用hubbard parameters complane compart complane plasters complane compalers。我们发现,ACBN0是一种伪杂交密度函数,允许自洽测定$ u $参数,可改善所有研究的2D FES的频带差距的预测,其计算成本远低于混合密度功能。网站间库仑交互$ v $对于准确描述范德华异质结构的电子结构,例如biilayer,in $ _2 $ se $ _3 $,而在$ _2 $ _2 $ se $ _3 $/inte中至关重要。与基于FE的催化的研究有关,我们发现自吻合$ U $校正的应用可以强烈影响开放式分子在2D FES极性表面上的吸附能。

The discovery of two-dimensional (2D) materials possessing switchable spontaneous polarization with atomic thickness opens up exciting opportunities to realize ultrathin, high-density electronic devices with potential applications ranging from memories and sensors to photocatalysis and solar cells. First-principles methods based on density functional theory (DFT) have facilitated the discovery and design of 2D ferroelectrics (FEs). However, DFT calculations employing local and semilocal exchange-correlation functionals failed to predict accurately the band gaps for this family of low-dimensional materials. Here, we present a DFT+$U$+$V$ study on 2D FEs represented by single-layer $α$-In$_2$Se$_3$ and its homologous III$_2$-VI$_3$ compounds with both out-of-plane and in-plane polarization, using Hubbard parameters computed from first-principles. We find that ACBN0, a pseudo-hybrid density functional that allows self-consistent determination of $U$ parameters, improves the prediction of band gaps for all investigated 2D FEs with a computational cost much lower than the hybrid density functional. The inter-site Coulomb interaction $V$ becomes critical for accurate descriptions of the electronic structures of van der Waals heterostructures such as bilayer In$_2$Se$_3$ and In$_2$Se$_3$/InTe. Pertinent to the study of FE-based catalysis, we find that the application of self-consistent $U$ corrections can strongly affect the adsorption energies of open-shell molecules on the polar surfaces of 2D FEs.

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