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Tuning the Electronic Properties of Silicon via Molecular Self-Assembly

机译:通过分子自组装调节硅的电子性质

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Control over the surface chemistry and physics of electronic and optical materials is essential for constructing devices and fine-tuning their performance. In the past few years we have started to explore the use of organic molecules for systematic modification of semiconductor surface electronic properties. In this paper, manipulation of silicon surfaces by self-assembly of various quinolinium-based chromophores is reported. the progress of the assembly process is monitored by XPS, UV-Vis, and FTIR spectroscopies as well as with surface wettability. The effect of the monolayer's dipole-moment on the Si surface potential and the interaction with surface states is monitored by CPD measurements. A pronounced effect of a sub-nanometer coupling-agent layer alone on the electron affinity and band-bending of Si was observed. We also show a way to modulate the Si work-function by tuning the dipole strength of the chromophore-containing organic, self-assembled monolayer and of its orientation with respect to the silicon surface.
机译:对电气和光学材料的表面化学和物理来控制对于构建装置并进行微调它们的性能至关重要。在过去的几年中,我们开始探索使用有机分子来系统改变半导体表面电子特性。本文报道了通过各种基于喹啉基发色团的自组装进行硅表面的操纵。通过XPS,UV-Vis和FTIR光谱以及表面润湿性监测组装过程的进展。通过CPD测量监测单层偶极矩对Si表面电位和与表面状态的相互作用的影响。仅观察到亚纳米偶联剂层对Si的电子亲和力和带弯曲的发音效果。我们还通过调整含有色团的有机,自组装单层和其取向相对于硅表面的偶极强度来调节SI工作功能的方法。

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