论文标题
扶手椅碳纳米管薄膜中语音辅助的Intertube电子传输的证据
Evidence for Phonon-Assisted Intertube Electronic Transport in an Armchair Carbon Nanotube Film
论文作者
论文摘要
纳米材料的宏观组装的电导率是通过在组成纳米对象之间和之间的电子传输的复杂相互作用来确定的。在这种情况下,声子起着双重作用:他们的人群增加倾向于通过电子散射来降低电导率,而它们可以通过辅助电子通过潜在的能源景观传播来提高电导率。在这里,我们在扶手椅单壁碳纳米管的宏观膜上,在邻近纳米管之间进行了声子辅助的相干电子传输过程。通过对电子状态的原子建模以及电子和声子辅助连接电导的计算,我们得出的结论是,声子辅助电导是观察到的高温转运的主要机制。相干插管动力学的明确表现证明,单手性扶手椅纳米管膜是纳米对象的独特宏观固态集合,有望为开发室温相干电子设备的发展。
The electrical conductivity of a macroscopic assembly of nanomaterials is determined through a complex interplay of electronic transport within and between constituent nano-objects. Phonons play dual roles in this situation: their increased populations tend to reduce the conductivity via electron scattering while they can boost the conductivity by assisting electrons to propagate through the potential-energy landscape. Here, we identify a phonon-assisted coherent electron transport process between neighboring nanotubes in temperature-dependent conductivity measurements on a macroscopic film of armchair single-wall carbon nanotubes. Through atomistic modeling of electronic states and calculations of both electronic and phonon-assisted junction conductances, we conclude that phonon-assisted conductance is the dominant mechanism for the observed high-temperature transport. The unambiguous manifestation of coherent intertube dynamics proves a single-chirality armchair nanotube film to be a unique macroscopic solid-state ensemble of nano-objects promising for the development of room-temperature coherent electronic devices.