Chi Baoqian, Liu Yi, Li Xiaowu, Xu Jingcheng, Qin Xuming, Sun Chen, Bai Chenghao, Zhao Xinluo
Institute of Materials Physics and Chemistry, College of Sciences, Northeastern University, No.3-11, Wenhua Road, Shenyang, 110819, People's Republic of China.
J Mol Model. 2015 Jun;21(6):154. doi: 10.1007/s00894-015-2700-7. Epub 2015 May 23.
The energetic stability, atomic and electronic structures of γ-graphyne and its derivatives (γ-GYs) with extended carbon chains were investigated as a function of chain length by density functional calculations in this work. The studied γ-GYs consist of hexagon carbon rings connected by linear chains with C atoms n = 0-22. We predict that the even-numbered C chains of γ-GYs consist of alternating single and triple C-C bonds (polyyne), energetically more stable than the odd-numbered C chains made of continuous C-C double bonds (polycumulene). The calculated electronic structures indicate that γ-GYs can be either metallic (odd n) or semiconductive (even n) depending on the parity of the number of C chain atoms. The semiconducting γ-GYs are predicted to have ~1.2 eV direct band gaps and 0.1-0.2 effective electron masses independent of the chain length. Thus introducing sp carbon atoms into sp (2)-based graphene provides a novel way to open up band gaps without doping and defects while maintaining small electron masses critical to good transport properties. Graphical Abstract The typical atomic model of graphyne (middle) as well as their band gaps (left) and electron density (right).
在本工作中,通过密度泛函计算研究了具有延长碳链的γ-石墨炔及其衍生物(γ-GYs)的能量稳定性、原子结构和电子结构与链长的关系。所研究的γ-GYs由通过碳原子数n = 0 - 22的线性链连接的六边形碳环组成。我们预测,γ-GYs的偶数碳链由交替的单键和三键C-C键(聚乙炔)组成,在能量上比由连续C-C双键(聚累积烯烃)组成的奇数碳链更稳定。计算得到的电子结构表明,γ-GYs根据碳链原子数的奇偶性可以是金属性的(奇数n)或半导体性的(偶数n)。预计半导体γ-GYs具有~1.2 eV的直接带隙和与链长无关的0.1 - 0.2的有效电子质量。因此,将sp碳原子引入基于sp(2)的石墨烯中提供了一种在不掺杂和无缺陷的情况下打开带隙的新方法,同时保持对良好传输性能至关重要的小电子质量。图形摘要 石墨炔的典型原子模型(中间)及其带隙(左)和电子密度(右)。