Carlsson Johan M, Scheffler Matthias
Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, D-14195 Berlin, Germany.
Phys Rev Lett. 2006 Feb 3;96(4):046806. doi: 10.1103/PhysRevLett.96.046806.
Nanoporous carbon (NPC) exhibits unexplained chemical properties, making it distinct from other graphenelike materials, such as graphite, fullerenes, or nanotubes. In this Letter, we analyze the properties of NPC in terms of its structural motifs, which are derived from defects in distorted graphene sheets. Our density-functional theory calculations show that these motifs can be present in high concentration (up to 1%). Some of them induce localized levels close to the Fermi level, therefore leading to local charging and controlling the material's chemical function, for example, as a catalyst.
纳米多孔碳(NPC)展现出无法解释的化学性质,使其有别于其他类石墨烯材料,如石墨、富勒烯或纳米管。在本信函中,我们根据其结构基序来分析NPC的性质,这些结构基序源自扭曲石墨烯片层中的缺陷。我们的密度泛函理论计算表明,这些基序可以高浓度存在(高达1%)。其中一些会在费米能级附近诱导出局域能级,从而导致局部电荷积累并控制材料的化学功能,例如作为催化剂。