Center for Advancing Electronics Dresden (cfaed) and Faculty of Chemistry and Food Chemistry, Technische Universität Dresden, Dresden, Germany.
Max Planck Institute for Polymer Research, Mainz, Germany.
Nat Mater. 2023 Jul;22(7):880-887. doi: 10.1038/s41563-023-01581-6. Epub 2023 Jun 19.
Two-dimensional conjugated polymers (2DCPs), composed of multiple strands of linear conjugated polymers with extended in-plane π-conjugation, are emerging crystalline semiconducting polymers for organic (opto)electronics. They are represented by two-dimensional π-conjugated covalent organic frameworks, which typically suffer from poor π-conjugation and thus low charge carrier mobilities. Here we overcome this limitation by demonstrating two semiconducting phthalocyanine-based poly(benzimidazobenzophenanthroline)-ladder-type 2DCPs (2DCP-MPc, with M = Cu or Ni), which are constructed from octaaminophthalocyaninato metal(II) and naphthalenetetracarboxylic dianhydride by polycondensation under solvothermal conditions. The 2DCP-MPcs exhibit optical bandgaps of ~1.3 eV with highly delocalized π-electrons. Density functional theory calculations unveil strongly dispersive energy bands with small electron-hole reduced effective masses of ~0.15m for the layer-stacked 2DCP-MPcs. Terahertz spectroscopy reveals the band transport of Drude-type free carriers in 2DCP-MPcs with exceptionally high sum mobility of electrons and holes of ~970 cm V s at room temperature, surpassing that of the reported linear conjugated polymers and 2DCPs. This work highlights the critical role of effective conjugation in enhancing the charge transport properties of 2DCPs and the great potential of high-mobility 2DCPs for future (opto)electronics.
二维共轭聚合物(2DCPs)由多条线性共轭聚合物组成,具有扩展的面内π共轭,是新兴的用于有机(光电)电子学的结晶半导体聚合物。它们由二维π共轭共价有机骨架表示,这些骨架通常存在π共轭不良的问题,因此电荷载流子迁移率较低。在这里,我们通过展示两种基于半导体酞菁的聚(苯并咪唑苯并菲咯啉)-梯型 2DCPs(2DCP-MPc,其中 M=Cu 或 Ni)克服了这一限制,它们是通过在溶剂热条件下缩聚八氨基酞菁金属(II)和萘四羧酸二酐合成的。2DCP-MPc 具有约 1.3eV 的光学带隙和约 1.3eV,具有高度离域的π电子。密度泛函理论计算揭示了层状堆叠的 2DCP-MPc 具有强烈色散的能带,电子-空穴有效质量较小,约为 0.15m。太赫兹光谱揭示了 2DCP-MPc 中的德拜型自由载流子的能带输运,在室温下电子和空穴的总迁移率高达约 970cmV s,超过了报道的线性共轭聚合物和 2DCPs。这项工作强调了有效共轭在增强 2DCP 电荷输运性能方面的关键作用,以及高迁移率 2DCP 在未来光电领域的巨大潜力。