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从一维MX链到梯子状和纳米管系统的维度扩展:结构和电子性质

Dimensionally Extending from 1D MX-Chain to Ladder and Nanotube Systems: Structural and Electronic Properties.

作者信息

Liang Hao, Otsubo Kazuya, Kitagawa Hiroshi

机构信息

Division of Chemistry, Graduate School of Science, Kyoto University, Kitashirakawa-Oiwakecho, Sakyo-ku, Kyoto, 606-8502, Japan.

Department of Chemistry, Faculty of Science, Tokyo University of Science, Tokyo, 162-0826, Japan.

出版信息

Chemistry. 2024 Dec 13;30(70):e202402583. doi: 10.1002/chem.202402583. Epub 2024 Oct 30.

Abstract

Molecular one-dimensional (1D) electron systems have attracted much attention due to their unique electronic state, physical and chemical properties derived from high-aspect-ratio structures. Among 1D materials, mixed-valence halogen-bridged transition-metal chain complexes (MX-chains) based on coordination assemblies are currently of particular interest because their electronic properties, such as mixed-valence state and band gap, can be controlled by substituting components and varying configurations. In particular, chemistry has recently noted that dimensionally extending MX-chains through organic rung ligands can introduce and modulate electronic coupling of metal atoms between chains, i. e., interchain interactions. In this review, for the first time, we highlight the recent progress on MX systems from the viewpoint of dimensionally extending from 1D chain to ladder and nanotube, mainly involving structural design and electronic properties. Overall, dimensional extension can not only tune the electronic properties of MX-chain, but also build the unique platform for studying transport dynamics in confined space, such as proton conduction. Based on these features, we envision that the MX-chain systems provide valuable insights into deep understanding of 1D electron systems, as well as the potential applications such as nanoelectronics.

摘要

分子一维(1D)电子系统因其独特的电子态以及由高纵横比结构衍生出的物理和化学性质而备受关注。在一维材料中,基于配位组装的混合价态卤素桥联过渡金属链配合物(MX链)目前尤为引人关注,因为其电子性质,如混合价态和带隙,可以通过替换组分和改变构型来控制。特别是,化学领域最近注意到,通过有机梯级配体在维度上扩展MX链可以引入并调节链间金属原子的电子耦合,即链间相互作用。在本综述中,我们首次从从一维链向梯子和纳米管进行维度扩展的角度突出了MX体系的最新进展,主要涉及结构设计和电子性质。总体而言,维度扩展不仅可以调节MX链的电子性质,还能构建用于研究受限空间内传输动力学(如质子传导)的独特平台。基于这些特性,我们设想MX链系统为深入理解一维电子系统以及纳米电子学等潜在应用提供了有价值的见解。

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