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用于无金属共面晶体管的共轭聚合物的高导电超薄层,具有单层聚合物输运层。

Highly Conductive Ultrathin Layers of Conjugated Polymers for Metal-Free Coplanar Transistors with Single-Polymer Transport Layers.

机构信息

Frontier Institute of Science and Technology, Xi'an Jiaotong University, Xi'an 710054, China.

State Key Laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 8;15(9):12099-12108. doi: 10.1021/acsami.2c20298. Epub 2023 Feb 21.

DOI:10.1021/acsami.2c20298
PMID:36808932
Abstract

Although metal or oxide conductive films are widely used as electrodes of electronic devices, organic electrodes would be more favorable for next-generation organic electronics. Here, using some model conjugated polymers as examples, we report a class of highly conductive and optically transparent polymer ultrathin layers. Vertical phase separation of semiconductor/insulator blends leads to a highly ordered two-dimensional (2D) ultrathin layer of conjugated-polymer chains on the insulator. Afterwards, the thermally evaporated dopants on the ultrathin layer lead to a conductivity of up to 10 S cm and a sheet resistance 10 Ω/square for a model conjugated polymer poly(2,5-bis(3-hexadecylthiophen-2-yl)thieno[3,2-]thiophenes) (PBTTT). The high conductivity is due to the high hole mobility (∼ 20 cm V s), although doping-induced charge density is still in the moderate range of 10 cm with a 1 nm thick dopant. Metal-free monolithic coplanar field-effect transistors using the same conjugated-polymer ultrathin layer with alternatively doped regions as electrodes and a semiconductor layer are realized. The field-effect mobility of this monolithic transistor is over 2 cm V s for PBTTT, one order higher than that of the conventional PBTTT transistor using metal electrodes. The optical transparency of the single conjugated-polymer transport layer is over 90%, demonstrating a bright future for all-organic transparent electronics.

摘要

虽然金属或氧化物导电膜被广泛用作电子器件的电极,但有机电极对于下一代有机电子器件将更为有利。在这里,我们以一些模型共轭聚合物为例,报告了一类具有高导电性和光透明性的聚合物超薄层。半导体/绝缘体混合物的垂直相分离导致在绝缘体上形成高度有序的二维(2D)超薄共轭聚合物链层。随后,在超薄层上热蒸发掺杂剂会导致模型共轭聚合物聚(2,5-双(3-己基噻吩-2-基)噻吩[3,2-b]噻吩)(PBTTT)的电导率高达 10 S cm,方阻低至 10 Ω/square。高导电性归因于空穴迁移率高(约 20 cm V s),尽管掺杂诱导的电荷密度仍处于适度范围,掺杂剂厚度为 1nm 时约为 10 cm。使用具有交替掺杂区的相同共轭聚合物超薄层作为电极和半导体层的金属免费单片共面场效应晶体管得以实现。该单片晶体管的场效应迁移率对于 PBTTT 超过 2 cm V s,比使用金属电极的传统 PBTTT 晶体管高一个数量级。单层共轭聚合物输运层的光透明度超过 90%,为全有机透明电子学展示了光明的前景。

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