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Self-assembled Monolayers For Electrode Fabrication And Efficient Threshold Voltage Control Of Organic Transistors With Amorphous Semiconductor Layer

机译:电极制造用自组装单分子膜和有效控制具有非晶半导体层的有机晶体管的阈值电压

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摘要

In this paper we show that thiolated self-assembled monolayers (SAMs) can be used to anchor source-drain gold electrodes on the substrate, leading to excellent electrical performances of the organic field-effect transistor (OFET) on a par with those using a standard electrode process. Using an amorphous semiconductor and a gate dielectric functionalized with SAMs bearing different dipole moments, we demonstrate that we can tune the threshold voltage alone, while keeping nearly unchanged the other electrical properties (hole carrier mobility, I_(on)/I_(off) ratio, subthreshold swing). This differs from previous studies for which SAMs functionalization induced significant changes in all the OFET electrical performances. This result opens doors to design organic circuits using reproducible amorphous semiconductor based OFETs for which only the threshold voltage can be tuned on demand.
机译:在本文中,我们证明了可以使用硫醇化的自组装单分子层(SAMs)将源极-漏极金电极锚定在基板上,从而使有机场效应晶体管(OFET)的电性能与使用ASF的有机电晶体相当。标准电极工艺。我们使用非晶半导体和用承受不同偶极矩的SAM进行功能化的栅极电介质,证明了我们可以单独调谐阈值电压,同时保持几乎不变的其他电特性(空穴载流子迁移率,I_(on)/ I_(off)比) ,亚阈值摆动)。这与先前的研究不同,在先前的研究中,SAMs的功能化导致所有OFET电气性能发生重大变化。这一结果为使用基于可再生的非晶半导体的OFET设计有机电路打开了大门,对于这些电路,仅可以根据需要调整阈值电压。

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