论文标题

石墨c $ _4 $ n $ _3 $单层的基于平流的铁磁半导体状态

Flat-band based ferromagnetic semiconducting state in the graphitic C$_4$N$_3$ monolayer

论文作者

He, Chaoyu, Liao, Yujie, Ouyang, Tao, Zhang, Huimin, Xiang, Hongjun, Zhong, Jianxin

论文摘要

提议一组新的基于六角形$ \ sqrt {n} \ times \ sqrt {n} $ super-cells具有单孔缺陷(HL-D-1/2N)的超级细胞,以意识到非平凡的隔离式平板。通过执行紧密结合和密度功能理论计算,我们证明了实验实现的石墨氮化碳(Adv。Mater。,22,22,1004,2010;Nat。commun。,9,3366,2018),HL-D​​-1/8基于C $ _4 $ N $ n $ _3 $,是一种完美的系统,可以容纳此类平面频带。对于平坦的高能量P-6M2 C $ _4 $ n $ _3 $结构,它显示了与隔离的平面频段无关的铁磁半金属。但是,p-6m2 c $ _4 $ n $ _3 $结构动态不稳定。使用基于组和图理论的结构搜索方法,我们发现新的瓦楞PCA21 C4N3结构在所有已知的C $ _4 $ n $ _3 $结构中具有最低的能量。此PCA21 C $ _4 $ n $ _3 $结构是一种内在的铁磁半磁导器(TC $ \ $ \ $ 241 K),其中一个半导体的自旋通道(1.75 eV)(1.75 eV)和一个绝缘的旋转频道(3.64 eV),在两二维系统中很少见。它的铁磁半导体属性源自孤立的p $ _z $ - 州平坦频段,因为波纹率向上移动到费米水平。有趣的是,该PCA21 C $ _4 $ n $ _3 $结构被发现是压电和铁电的,这使得C $ _4 $ n $ _3 $是一个不寻常的过渡金属2D多效性。

A new set of lattice-models based on the hexagonal $\sqrt{N}\times\sqrt{N}$ super-cells of the well-known honeycomb lattice with single-hole defect (HL-D-1/2N) are proposed to realize the nontrivial isolated flat-bands. Through performing both tight-binding and density functional theory calculations, we demonstrate that the experimentally realized graphitic carbon nitride (Adv. Mater., 22, 1004, 2010; Nat. Commun., 9, 3366, 2018), the HL-D-1/8 based C$_4$N$_3$, is a perfect system to host such flat bands. For the flat high-energy P-6m2 C$_4$N$_3$ structure, it displays the ferromagnetic half-metallicity which is not related to the isolated flat bands. However, the P-6m2 C$_4$N$_3$ structure is dynamically unstable. Using a structure searching method based on group and graph theory, we find that a new corrugated Pca21 C4N3 structure has the lowest energy among all known C$_4$N$_3$ structures. This Pca21 C$_4$N$_3$ structure is an intrinsic ferromagnetic half-semiconductor (Tc$\approx$241 K) with one semiconducting spin-channel (1.75 eV) and one insulating spin-channel (3.64 eV), which is quite rare in the two-dimensional (2D) systems. Its ferromagnetic semiconducting property originates from the isolated p$_z$-state flat-band as the corrugation shift the flat band upward to the Fermi level. Interestingly, this Pca21 C$_4$N$_3$ structure is found to be piezoelectric and ferroelectric, which makes C$_4$N$_3$ an unusual transition-metal-free 2D multiferroic.

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