论文标题
PBTE单层中的二维金属铁电性通过静电掺杂
Two-dimensional metallic ferroelectricity in PbTe monolayer by electrostatic doping
论文作者
论文摘要
以铁电扭曲和金属性同时共存的极性金属引起了极大的关注。在低维处开发此类材料仍然具有挑战性,因为导电和降低的尺寸都应该淬灭铁电性。在这里,基于第一原理计算,我们报告了具有静电掺杂的二维(2D)金属材料中铁电行为的发现,即使在原子尺度上铁电性是非常规的。我们揭示了PBTE单层是固有的铁电气,其平面外电化极化起源于其非中心对称性屈曲结构。铁电畸变可以用掺杂在铁电单层中的载体保存,从而使掺杂的PBTE单层能够充当2D极性金属。通过从参数化的能量空间中提取的有效的汉密尔顿人,我们发现弹性极模式的相互作用对于掺杂系统中强大的极性不稳定性至关重要。这种兴奋剂策略的应用不是当前晶体的特异性,而是对其他2D铁电的概括来带来引人入胜的金属铁电特性。因此,我们的发现改变了常规的承认,在2D材料中会促进低维度中多功能材料的发展。
Polar metals characterized by the simultaneous coexistence of ferroelectric distortions and metallicity have attracted tremendous attention. Developing such materials at low dimensions remains challenging since both conducting electrons and reduced dimensions are supposed to quench ferroelectricity. Here, based on first-principles calculations, we report the discovery of ferroelectric behavior in two-dimensional (2D) metallic materials with electrostatic doping, even though ferroelectricity is unconventional at the atomic scale. We reveal that PbTe monolayer is intrinsic ferroelectrics with pronounced out-of-plane electric polarization originated from its non-centrosymmetric buckled structure. The ferroelectric distortions can be preserved with carriers doping in the ferroelectric monolayer, which thus enables the doped PbTe monolayer to act as a 2D polar metal. With an effective Hamiltonian extracted from the parametrized energy space, we found that the elastic-polar mode interaction is of great importance for the existence of robust polar instability in the doped system. The application of this doping strategy is not specific to the present crystal, but is rather general to other 2D ferroelectrics to bring about the fascinating metallic ferroelectric properties. Our findings thus change conventional acknowledge in 2D materials and will facilitate the development of multifunctional material in low dimensions.