Jover Óscar, Martín-Jiménez Alberto, Franklin Hannah M, Koenig Ryan M, Martínez José I, Martín Nazario, Lauwaet Koen, Miranda Rodolfo, Gallego José M, Stevenson Steven, Otero Roberto
Dep. De Física de la Materia Condensada, Universidad Autónoma de Madrid, Madrid, 28049, Spain.
IMDEA Nanoscience, Madrid, 28049, Spain.
Small. 2024 Mar;20(9):e2307611. doi: 10.1002/smll.202307611. Epub 2023 Oct 20.
Fullertubes, that is, fullerenes consisting of a carbon nanotube moiety capped by hemifullerene ends, are emerging carbon nanomaterials whose properties show both fullerene and carbon nanotube (CNT) traits. Albeit it may be expected that their electronic states show a certain resemblance to those of the extended nanotube, such a correlation has not yet been found or described. Here it shows a scanning tunneling microscopy (STM) and spectroscopy (STS) characterization of the adsorption, self-assembly, and electronic structure of 2D arrays of [5,5]-C fullertube molecules on two different noble metal surfaces, Ag(111) and Au(111). The results demonstrate that the shape of the molecular orbitals of the adsorbed fullertubes corresponds closely to those expected for isolated species on the grounds of density functional theory calculations. Moreover, a comparison between the electronic density profiles in the bands of the extended [5,5]-CNT and in the molecules reveals that some of the frontier orbitals of the fullertube molecules can be described as the result of the quantum confinement imposed by the hemifullerene caps to the delocalized band states in the extended CNT. The results thus provide a conceptual framework for the rational design of custom fullertube molecules and can potentially become a cornerstone in the understanding of these new carbon nanoforms.
富勒管,即由碳纳米管部分和半球烯端帽组成的富勒烯,是一种新兴的碳纳米材料,其性质兼具富勒烯和碳纳米管(CNT)的特征。尽管可以预期它们的电子态与延伸的纳米管的电子态有一定相似性,但尚未发现或描述这种相关性。本文展示了在两种不同的贵金属表面Ag(111)和Au(111)上,[5,5]-C富勒管分子二维阵列的吸附、自组装和电子结构的扫描隧道显微镜(STM)和光谱(STS)表征。结果表明,吸附的富勒管分子轨道的形状与基于密度泛函理论计算预期的孤立物种的分子轨道形状密切对应。此外,对延伸的[5,5]-CNT能带和分子中的电子密度分布进行比较后发现,富勒管分子的一些前沿轨道可以描述为半球烯帽对延伸的CNT中离域能带状态施加量子限制的结果。因此,这些结果为定制富勒管分子的合理设计提供了一个概念框架,并有可能成为理解这些新型碳纳米形态的基石。