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碘链封装在碳纳米管内的结构扭曲和电荷密度波。

Structural Distortions and Charge Density Waves in Iodine Chains Encapsulated inside Carbon Nanotubes.

机构信息

COMP, Department of Applied Physics, Aalto University , P.O. Box 11100, 00076 Aalto, Finland.

Nanomaterials Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), AIST Central 5, Tsukuba, Ibaraki 305-8565, Japan.

出版信息

Nano Lett. 2017 Jun 14;17(6):3694-3700. doi: 10.1021/acs.nanolett.7b00969. Epub 2017 Jun 1.

Abstract

Atomic chains are perfect systems for getting fundamental insights into the electron dynamics and coupling between the electronic and ionic degrees of freedom in one-dimensional metals. Depending on the band filling, they can exhibit Peierls instabilities (or charge density waves), where equally spaced chain of atoms with partially filled band is inherently unstable, exhibiting spontaneous distortion of the lattice that further leads to metal-insulator transition in the system. Here, using high-resolution scanning transmission electron microscopy, we directly image the atomic structures of a chain of iodine atoms confined inside carbon nanotubes. In addition to long equidistant chains, the ones consisting of iodine dimers and trimers were also observed, as well as transitions between them. First-principles calculations reproduce the experimentally observed bond lengths and lattice constants, showing that the ionic movement is largely unconstrained in the longitudinal direction, while naturally confined by the nanotube in the lateral directions. Moreover, the trimerized chain bears the hallmarks of a charge density wave. The transition is driven by changes in the charge transfer between the chain and the nanotube and is enabled by the charge compensation and additional screening provided by the nanotube.

摘要

原子链是研究一维金属中电子动力学和电子与离子自由度之间耦合的理想体系。根据能带填充情况,它们可能表现出 Peierls 不稳定性(或电荷密度波),其中具有部分填充能带的等距原子链本质上是不稳定的,表现出晶格的自发畸变,进而导致系统中的金属-绝缘体转变。在这里,我们使用高分辨率扫描透射电子显微镜直接观察到了被限制在碳纳米管内的碘原子链的原子结构。除了长的等距链之外,还观察到了由碘二聚体和三聚体组成的链,以及它们之间的转变。第一性原理计算再现了实验观察到的键长和晶格常数,表明离子在纵向方向上的运动在很大程度上不受限制,而在横向方向上则被纳米管自然限制。此外,三聚体链具有电荷密度波的特征。这种转变是由链和纳米管之间的电荷转移变化驱动的,并且纳米管提供的电荷补偿和额外屏蔽使其成为可能。

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