Casillas Gilberto, Mayoral Alvaro, Liu Mingjie, Ponce Arturo, Artyukhov Vasilii I, Yakobson Boris I, Jose-Yacaman Miguel
Department of Physics and Astronomy, University of Texas at San Antonio, One UTSA Circle, San Antonio, Texas 78249, USA.
Laboratorio de Microscopias Avanzadas (LMA), Instituto de Nanociencia de Aragon, Universidad de Zaragoza, Mariano Esquillor, Edificio I+D, 50015, Zaragoza, Spain.
Carbon N Y. 2014 Jan;66. doi: 10.1016/j.carbon.2013.09.019.
Atomic carbon chains have raised interest for their possible applications as graphene interconnectors as the thinnest nanowires; however, they are hard to synthesize and subsequently to study. We present here a reproducible method to synthesize carbon chains TEM. Moreover, we present a direct observation of the bond length alternation in a pure carbon chain by aberration corrected TEM. Also, cross bonding between two carbon chains, 5 nm long, is observed experimentally and confirmed by DFT calculations. Finally, while free standing carbon chains were observed to be straight due to tensile loading, a carbon chain inside the walls of a carbon nanotube showed high flexibility.
原子碳链因其作为石墨烯互连器(最细的纳米线)的潜在应用而引发了人们的兴趣;然而,它们很难合成,随后也难以研究。我们在此展示一种可重复的方法来合成碳链并通过透射电子显微镜(TEM)进行研究。此外,我们通过像差校正透射电子显微镜直接观察到了纯碳链中的键长交替。而且,实验观察到了两条5纳米长的碳链之间的交叉键合,并通过密度泛函理论(DFT)计算得到了证实。最后,虽然观察到独立的碳链由于拉伸载荷而呈直线状,但碳纳米管壁内的一条碳链却表现出了很高的柔韧性。