偶极子
单层
材料科学
自组装单层膜
化学物理
极地的
自组装
纳米技术
计算化学
化学
物理
有机化学
天文
作者
Tarek Abu‐Husein,Swen Schuster,David A. Egger,Martin Kind,Tobias Santowski,Adrian Wiesner,Ryan C. Chiechi,Egbert Zojer,Andreas Terfort,Michael Zharnikov
标识
DOI:10.1002/adfm.201500899
摘要
Using a representative model system, here electronic and structural properties of aromatic self‐assembled monolayers (SAMs) are described that contain an embedded, dipolar group. As polar unit, pyrimidine is used, with its orientation in the molecular backbone and, consequently, the direction of the embedded dipole moment being varied. The electronic and structural properties of these embedded‐dipole SAMs are thoroughly analyzed using a number of complementary characterization techniques combined with quantum‐mechanical modeling. It is shown that such mid‐chain‐substituted monolayers are highly interesting from both fundamental and application viewpoints, as the dipolar groups are found to induce a potential discontinuity inside the monolayer, electrostatically shifting the core‐level energies in the regions above and below the dipoles relative to one another. These SAMs also allow for tuning the substrate work function in a controlled manner independent of the docking chemistry and, most importantly, without modifying the SAM‐ambient interface.
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