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一种简单而稳健的降低有机晶体管接触电阻的方法。

A simple and robust approach to reducing contact resistance in organic transistors.

机构信息

Department of Physics and Center for Functional Materials, Wake Forest University, Winston-Salem, North Carolina, 27109, USA.

Materials Science and Engineering Division, National Institute of Standards and Technology, Gaithersburg, Maryland, 20899, USA.

出版信息

Nat Commun. 2018 Dec 3;9(1):5130. doi: 10.1038/s41467-018-07388-3.

Abstract

Efficient injection of charge carriers from the contacts into the semiconductor layer is crucial for achieving high-performance organic devices. The potential drop necessary to accomplish this process yields a resistance associated with the contacts, namely the contact resistance. A large contact resistance can limit the operation of devices and even lead to inaccuracies in the extraction of the device parameters. Here, we demonstrate a simple and efficient strategy for reducing the contact resistance in organic thin-film transistors by more than an order of magnitude by creating high work function domains at the surface of the injecting electrodes to promote channels of enhanced injection. We find that the method is effective for both organic small molecule and polymer semiconductors, where we achieved a contact resistance as low as 200 Ωcm and device charge carrier mobilities as high as 20 cmVs, independent of the applied gate voltage.

摘要

从接触处高效地向半导体层注入载流子对实现高性能有机器件至关重要。为完成这一过程所需的电势降会产生与接触处相关的电阻,即接触电阻。大的接触电阻会限制器件的运行,甚至导致器件参数的提取出现误差。在这里,我们展示了一种通过在注入电极的表面形成高功函数畴来提高注入效率,从而将有机薄膜晶体管的接触电阻降低一个数量级以上的简单有效的策略。我们发现,该方法对有机小分子和聚合物半导体都有效,我们实现了低至 200 Ωcm 的接触电阻和高达 20 cmVs 的器件载流子迁移率,且与所施加的栅极电压无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58a2/6277450/50ba04cc7c13/41467_2018_7388_Fig1_HTML.jpg

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