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Oxygen-mediated electron transport through hybrid silicon-organic interfaces

机译:氧介导的通过有机硅-有机界面的电子传输

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We investigate from first principles the electronic and transport properties of hybrid organic/silicon interfaces of relevance to molecular electronics. We focus on conjugated molecules bonded to hydrogenated Si through hydroxyl or thiol groups. The electronic structure of the systems is addressed within density functional theory, and the electron transport across the interface is directly evaluated within the Landauer approach. The microscopic effects of molecule-substrate bonding on the transport efficiency are explicitly analyzed, and the oxygen-bonded interface is identified as a candidate system when preferential hole transfer is needed.
机译:我们从第一原理出发,研究与分子电子学相关的混合有机/硅界面的电子和传输特性。我们专注于通过羟基或硫醇基与氢化硅键合的共轭分子。在密度泛函理论中讨论了系统的电子结构,并且在Landauer方法中直接评估了通过界面的电子传输。明确分析了分子-底物键合对传输效率的微观影响,当需要优先进行空穴转移时,氧键合界面被确定为候选系统。

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