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First-principles prediction of a new planar hydrocarbon material: half-hydrogenated 14,14,14-graphyne  ( SCI-EXPANDED收录)  

文献类型:期刊文献

英文题名:First-principles prediction of a new planar hydrocarbon material: half-hydrogenated 14,14,14-graphyne

作者:Zhang, Hongyu[1];Pan, Hongzhe[2,3];Zhang, Meng[1];Luo, Youhua[1]

机构:[1]East China Univ Sci & Technol, Dept Phys, Shanghai 200237, Peoples R China;[2]Nanjing Univ, Nanjing Natl Lab Microstruct, Nanjing 210093, Jiangsu, Peoples R China;[3]Nanjing Univ, Collaborat Innovat Ctr Adv Microstruct, Nanjing 210093, Jiangsu, Peoples R China

年份:2016

卷号:18

期号:34

起止页码:23954

外文期刊名:PHYSICAL CHEMISTRY CHEMICAL PHYSICS

收录:;WOS:【SCI-EXPANDED(收录号:WOS:000382107200058)】;

基金:This work was supported by the National Natural Science Foundation of China (No. 11304096).

语种:英文

摘要:Graphynes, novel allotropic forms of carbon, have become a rising star in two-dimensional materials science due to the diverse geometric structures and excellent electronic properties. In this paper, first-principles calculations were performed to investigate a favorable path for successive hydrogenation of 14,14,14-graphyne and electronic properties of the resulting novel planar structure. Pairs of hydrogen atoms prefer to arrange themselves on opposite sides of acetylenic bonds within the basal plane due to the collective stabilization mediated by cooperative buckling of the original linear acetylenic chains. Progressive hydrogenation favors proceeding along linear directions in a row-by-row manner. A new strictly planar sp-sp(2)-bonded hydrocarbon is formed when half of the sp-hybridized carbon atoms in the chains are hydrogenated. In contrast to the zero-band-gap feature of pristine 14,14,14-graphyne, this hydrocarbon possesses a moderate direct band gap. A possible experimental realization of the proposed two-dimensional hydrocarbon was also discussed. This novel planar hydrocarbon material can not only broaden the application field of graphyne family in electronic and optoelectronic devices but also enrich the databases of carbon-based two-dimensional materials.

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