论文标题

稳定且可加工的累积SP碳电线:有机电子的新范式

Stable and Solution-Processable Cumulenic sp-Carbon Wires: A New Paradigm for Organic Electronics

论文作者

Pecorario, Stefano, Scaccabarozzi, Alberto D., Fazzi, Daniele, Gutiérrez-Fernández, Edgar, Vurro, Vito, Maserati, Lorenzo, Jiang, Mengting, Losi, Tommaso, Sun, Bozheng, Tykwinski, Rik R., Casari, Carlo S., Caironi, Mario

论文摘要

解决方案处理,大面积和柔性电子产品在很大程度上依赖于SP $^2 $杂交的碳分子的出色电子性质,要么以$ $π$偶联的小分子和聚合物和聚合物或石墨烯和碳纳米管的形式形式。碳含有Sp-Hybridization的碳是难以捉摸的同素同素Carbyne的基础,以线性碳原子电线(CAWS)的形式为功能化分子提供了巨大的机会,具有吸引人甚至优越的预测电子特性。虽然CAWS代表了一个充满活力的研究领域,但迄今为止,它们仅谨慎地应用于分子设备。最近观察到微晶云母中的现场效应表明它们在解决方案处理的薄膜晶体管中的潜在应用,但围绕稳定性和电子性能的担忧已阻止了在这个方向上的发展。在本研究中,对于四苯基的溶液加工薄膜[3]累积菌(最短的半导体CAW),证明了理想的现场效应特征。膜是通过可扩展的大区域涂层技术沉积的,为晶体管提供了超过0.1 cm $^2 $^2 $ v $^{ - 1} $ s $ s $^{ - 1} $,以及在黑暗条件下有希望的操作稳定性。这些结果为基于SP杂交碳系统的有机电子产品的大量分子半导体提供了坚实的基础,并创建了先前未开发的范式。

Solution-processed, large-area, and flexible electronics largely relies on the excellent electronic properties of sp$^2$-hybridized carbon molecules, either in the form of $π$-conjugated small molecules and polymers or graphene and carbon nanotubes. Carbon with sp-hybridization, the foundation of the elusive allotrope carbyne, offers vast opportunities for functionalized molecules in the form of linear carbon atomic wires (CAWs), with intriguing and even superior predicted electronic properties. While CAWs represent a vibrant field of research, to date, they have only been applied sparingly to molecular devices. The recent observation of the field-effect in microcrystalline cumulenes suggests their potential applications in solution-processed thin-film transistors but concerns surrounding the stability and electronic performance have precluded developments in this direction. In the present study, ideal field-effect characteristics are demonstrated for solution-processed thin films of tetraphenyl[3]cumulene, the shortest semiconducting CAW. Films are deposited through a scalable, large-area, meniscus-coating technique, providing transistors with hole mobilities in excess of 0.1 cm$^2$ V$^{-1}$ s$^{-1}$, as well as promising operational stability under dark conditions. These results offer a solid foundation for the exploitation of a vast class of molecular semiconductors for organic electronics based on sp-hybridized carbon systems and create a previously unexplored paradigm.

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