Li Yang, Wu Junhan, Li Chunmei, Wang Qiang, Shen Lei
School of Materials and Energy, Southwest University, Chongqing 400715, China.
Chongqing Key Laboratory for Advanced Materials and Technologies of Clean Energies, Southwest University, Chongqing 400715, P. R. China.
ACS Omega. 2021 Apr 19;6(16):10997-11004. doi: 10.1021/acsomega.1c00840. eCollection 2021 Apr 27.
The family of graphynes, novel two-dimensional semiconductors with various and fascinating chemical and physical properties, has attracted great interest from both scientific and industrial communities. Currently, the focus is on graphdiyne or graphyne-2. In this work, we systematically study the effect of acetylene, i.e., carbon-carbon triple bond, links on the electronic and optical properties of a series of graphynes (graphyne-, where = 1-5, the number of acetylene bonds) using ab initio calculations. We find an even-odd pattern, i.e., = 1, 3, 5 and = 2, 4 having different features, which has not been discovered in studying graphyne or graphdiyne alone. It is found that as the number of acetylene bonds increases, the electron effective mass increases continuously in the low-energy range because of the flatter conduction band induced by the longer acetylene links. Meanwhile, longer acetylene links result in a larger red shift of the imaginary part of the dielectric function, loss function, and extinction coefficient. In this work, we propose an effective method to tune and manipulate both the electronic and optical properties of graphynes for the applications in optoelectronic devices and photochemical catalysis.
石墨炔家族是一类具有多样且迷人的化学和物理性质的新型二维半导体,已经引起了科学界和工业界的极大兴趣。目前,研究重点是石墨二炔或石墨炔-2。在这项工作中,我们使用从头算计算系统地研究了乙炔(即碳-碳三键)连接对一系列石墨炔(石墨炔-,其中 = 1-5,乙炔键的数量)的电子和光学性质的影响。我们发现了一种奇偶模式,即 = 1、3、5和 = 2、4具有不同的特征,这在单独研究石墨炔或石墨二炔时尚未被发现。研究发现,随着乙炔键数量的增加,由于较长的乙炔连接导致导带更平坦,低能量范围内的电子有效质量持续增加。同时,较长的乙炔连接会导致介电函数、损耗函数和消光系数的虚部出现更大红移。在这项工作中,我们提出了一种有效方法来调节和操纵石墨炔的电子和光学性质,以用于光电器件和光化学催化应用。