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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Work function modification of the (111) gold surface covered by long alkanethiol-based self-assembled monolayers
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Work function modification of the (111) gold surface covered by long alkanethiol-based self-assembled monolayers

机译:长链烷硫醇基自组装单分子层覆盖的(111)金表面的功函数修饰

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Many recent experimental studies have demonstrated that the deposition of self-assembled monolayers on a metal electrode can significantly modulate its work function and hence charge injection properties in organic-based devices. In this context, we model here by means of Density Functional Theory (DFT) calculations the deposition of long saturated and partially fluorinated alkanethiol chains on the gold (111) surface and explore the shift in the work function while changing the size and degree of fluorination of the molecular backbone in order to contribute to the definition of design rules. Among all the derivatization schemes, only the introduction of a terminal fluoromethyl unit leads to an appreciable change in the work function shift, further accompanied by a reversal of its sign. The results show pronounced odd-even effects with different origins.
机译:最近的许多实验研究表明,自组装单分子层在金属电极上的沉积可显着调节其功函,从而调节有机基器件中的电荷注入性能。在这种情况下,我们在这里通过密度泛函理论(DFT)进行建模,计算出长饱和和部分氟化的链烷硫醇链在金(111)表面上的沉积,并探索功函数的变化,同时改变了氟化的大小和程度为了有助于设计规则的定义,分子骨架的结构。在所有衍生化方案中,仅引入末端氟甲基单元会导致功函数位移发生明显变化,并进一步伴随其符号的反转。结果显示出不同来源的明显的奇偶效应。

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