Cui Mengxing, Murase Ryuichi, Shen Yongbing, Sato Tetsu, Koyama Shohei, Uchida Kaiji, Tanabe Tappei, Takaishi Shinya, Yamashita Masahiro, Iguchi Hiroaki
Department of Chemistry, Graduate School of Science, Tohoku University 6-3 Aza-Aoba, Aramaki Sendai 980-8578 Japan
School of Materials Science and Engineering, Nankai University Tianjin 300350 P. R. China.
Chem Sci. 2022 Apr 1;13(17):4902-4908. doi: 10.1039/d2sc00447j. eCollection 2022 May 4.
Electrical conduction among metallocycles has been unexplored because of the difficulty in creating electronic transport pathways. In this work, we present an electrocrystallization strategy for synthesizing an intrinsically electron-conductive metallocycle, [Ni(NDI-Hpz)(dma)(NO)]·5DMA·HO (PMC-hexagon) (NDI-Hpz = ,'-di(1-pyrazol-4-yl)-1,4,5,8-naphthalenetetracarboxdiimide). The hexagonal metallocycle units are assembled into a densely packed ABCABC… sequence (like the fcc geometry) to construct one-dimensional (1D) helical π-stacked columns and 1D pore channels, which were maintained under the liberation of HO molecules. The NDI cores were partially reduced to form radicals as charge carriers, resulting in a room-temperature conductivity of (1.2-2.1) × 10 S cm (pressed pellet), which is superior to that of most NDI-based conductors including metal-organic frameworks and organic crystals. These findings open up the use of metallocycles as building blocks for fabricating conductive porous molecular materials.
由于难以创建电子传输路径,金属环之间的导电现象尚未得到探索。在这项工作中,我们提出了一种电结晶策略,用于合成一种具有本征电子导电性的金属环[Ni(NDI-Hpz)(dma)(NO)]·5DMA·H₂O(PMC-六边形)(NDI-Hpz = 2,6'-二(1-吡唑-4-基)-1,4,5,8-萘四羧酸二酰亚胺)。六边形金属环单元组装成紧密堆积的ABCABC…序列(类似于面心立方几何结构),以构建一维(1D)螺旋π堆积柱和1D孔道,这些结构在H₂O分子释放的情况下得以维持。NDI核部分还原形成作为电荷载流子的自由基,导致室温电导率为(1.2 - 2.1)×10⁻³ S cm⁻¹(压制片),这优于包括金属有机框架和有机晶体在内的大多数基于NDI的导体。这些发现开启了将金属环用作构建导电多孔分子材料的基石的应用。