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Processing Follows Function: Pushing the Formation of Self-Assembled Mono layers to High-Throughput Compatible Time Scales

机译:处理遵循功能:将自组装单层的形成推到高通量兼容时间标度

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Self-assembled monolayers (SAMs) of organic molecules can be used to tune interface energetics and thereby improve charge carrier injection at metalsemiconductor contacts. We investigate the compatibility of SAM formation with high-throughput processing techniques. Therefore, we examine the quality of SAMs, in terms of work function shift and chemical composition as measured with photoelectron and infrared spectroscopy and in dependency on molecular exposure during SAM formation. The functionality of the SAMs is determined by the performance increase of organic field-effect transistors upon SAM treatment of the source/drain contacts. This combined analytical and device-based approach enables us to minimize the necessary formation times via an optimization of the deposition conditions. Our findings demonstrate that SAMs composed of partially fluorinated alkanethiols can be prepared in ambient atmosphere from ethanol solution using immersion times as short as 5 s and still exhibit almost full charge injection functionality if process parameters are chosen carefully. This renders solution-processed SAMs compatible with high-throughput solution-based deposition techniques.
机译:有机分子的自组装单分子层(SAMs)可用于调整界面高能,从而改善金属半导体触点处的载流子注入。我们调查与高通量处理技术的SAM形成的兼容性。因此,我们检查了SAM的质量,包括用光电子和红外光谱测量的功函数变化和化学组成,以及在SAM形成过程中依赖于分子暴露的情况。 SAM的功能取决于对源/漏触点进行SAM处理后有机场效应晶体管的性能提高。这种结合分析和基于设备的方法使我们能够通过优化沉积条件来最大程度地减少必要的形成时间。我们的发现表明,由乙醇溶液可在环境气氛中使用短至5 s的浸渍时间来制备由部分氟化的链烷硫醇组成的SAM,如果仔细选择工艺参数,则仍可显示几乎完全的电荷注入功能。这使得溶液处理的SAM与基于高通量溶液的沉积技术兼容。

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