Institute of Polymer Optoelectronic Materials and Devices, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology (SCUT), Guangzhou, China.
Department of Chemistry, Southern University of Science and Technology (SUSTech), Shenzhen, China.
Nature. 2022 Nov;611(7935):271-277. doi: 10.1038/s41586-022-05295-8. Epub 2022 Sep 7.
Conducting polymers (CPs) with high conductivity and solution processability have made great advances since the pioneering work on doped polyacetylene, thus creating the new field of 'organic synthetic metals,. Various high-performance CPs have been realized, which enable the applications of several organic electronic devices. Nevertheless, most CPs exhibit hole-dominant (p-type) transport behaviour, whereas the development of n-type analogues lags far behind and only a few exhibit metallic state, typically limited by low doping efficiency and ambient instability. Here we present a facilely synthesized highly conductive n-type polymer poly(benzodifurandione) (PBFDO). The reaction combines oxidative polymerization and in situ reductive n-doping, greatly increasing the doping efficiency, and a doping level of almost 0.9 charges per repeating unit can be achieved. The resultant polymer exhibits a breakthrough conductivity of more than 2,000 S cm with excellent stability and an unexpected solution processability without extra side chains or surfactants. Furthermore, detailed investigations on PBFDO show coherent charge-transport properties and existence of metallic state. The benchmark performances in electrochemical transistors and thermoelectric generators are further demonstrated, thus paving the way for application of the n-type CPs in organic electronics.
导电聚合物 (CPs) 具有高导电性和溶液加工性能,自开创性的掺杂聚乙炔工作以来取得了重大进展,从而创造了“有机合成金属”的新领域。已经实现了各种高性能 CPs,这使得一些有机电子设备的应用成为可能。然而,大多数 CPs 表现出空穴主导(p 型)传输行为,而 n 型类似物的发展远远落后,只有少数具有金属态,通常受到低掺杂效率和环境不稳定性的限制。在这里,我们展示了一种易于合成的高导电性 n 型聚合物聚(苯并二呋喃二酮)(PBFDO)。该反应结合了氧化聚合和原位还原 n 掺杂,大大提高了掺杂效率,每个重复单元可以达到近 0.9 个电荷的掺杂水平。所得聚合物表现出超过 2000 S cm 的突破性电导率,具有出色的稳定性和意想不到的溶液加工性能,无需额外的侧链或表面活性剂。此外,对 PBFDO 的详细研究表明其具有相干电荷输运特性和金属态的存在。在电化学晶体管和热电发电机中的基准性能进一步得到了证明,从而为 n 型 CPs 在有机电子中的应用铺平了道路。