论文标题
关于基于锗的施瓦兹人的结构稳定性和光学特性:密度功能理论研究
On the Structural Stability and Optical Properties of Germanium-based Schwarzites: A Density Functional Theory Investigation
论文作者
论文摘要
由于石墨烯是合成的,它对基于碳同素同种异体的新2D和3D结构的兴趣每天都在增长。这些3D结构之一被称为碳纤维。 Schwarzites由具有三个晶状体形状的最小表面(TPM)形状的碳纳米结构组成,其特征在于存在超过六个原子的碳环引入的负高斯曲率。 Schwarzite家族的一些例子包括:原始(P),能力(G)和Diamond(D)。先前考虑了施瓦津族不同元素物种的研究已经研究了机械,电和热性能。在这项工作中,我们使用具有GGA交换相关功能的密度功能理论研究了锗(GE)schwarzites的稳定性。我们选择了每个家庭(P8BAL),(G688)和(D688)的一个结构。据观察,通常在碳纤维中扁平的区域可获得屈曲的构型,如先前在硅和德国单层上观察到的那样。调查的结构提出了一个半导体的带盖,从$ 0.13 $到$ 0.27 $ ev。我们还进行了线性状态内的光学特性的计算,在此表明,Ge schwarzites结构吸收了从红外到超紫罗兰的频率的光。因此,我们的结果开放了可以在Optelectronics设备应用程序中使用的材料的新观点。
Since graphene was synthesized the interest for building new 2D and 3D structures based on the carbon allotropes has been growing every day. One of these 3D structures is know as carbon schwarzites. Schwarzites consist of carbon nanostructures possessing the shape of Triply-Periodic Minimal Surfaces (TPMS), which is characterized by a negative Gaussian curvature introduced by the presence of carbon rings with more than six atoms. Some examples of schwarzite families include: primitive (P), gyroid (G) and diamond (D). Previous studies considering different element species of schwarzites have investigated the mechanical, electrical and thermal properties. In this work, we investigated the stability of germanium (Ge) schwarzites using density functional theory with GGA exchange-correlation functional. We chose one structure of each family (P8bal), (G688) and (D688). It was observed that regions usually flat in carbon schwarzites acquires buckled configurations as previously observed on silicene and germanene monolayers. The investigated structures presented a semiconducting bandgap ranging from $0.13$ to $0.27$ eV. We also performed calculations of optical properties within the linear regime, where it was shown that Ge schwarzites structures absorb light from infrared to ultra-violet frequencies. Therefore, our results open new perspectives of materials that can be used in optelectronics devices application.