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Fermi-level pinning at conjugated polymer interfaces

机译:在共轭聚合物界面上的费米能级钉扎

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Photoelectron spectroscopy has been used to map out energy level alignment of conjugated polymers at various organic-organic and hybrid interfaces. Specifically, we have investigated the hole-injection interface between the substrate and light-emitting polymer. Two different alignment regimes have been observed: (ⅰ) Vacuum-level alignment, which corresponds to the lack of vacuum-level offsets (Schottky-Mott limit) and (ⅱ) Fermi-level pinning, where the substrate Fermi level and the positive polaronic level of the polymer align. The observation is rationalized in terms of spontaneous charge transfer whenever the substrate Fermi level exceeds the positive polaron/ bipolaron formation energy per particle. The charge transfer leads to the formation of an interfacial dipole, as large as 2.1 eV.
机译:光电子能谱法已被用于绘制各种有机-有机和杂化界面上共轭聚合物的能级排列。具体而言,我们研究了基板与发光聚合物之间的空穴注入界面。观察到两种不同的对准方式:(ⅰ)真空水平对准,这对应于缺乏真空水平偏移(肖特基-莫特极限)和(ⅱ)费米能级钉扎,其中衬底费米能级和正极化子聚合物排列水平。只要底物费米能级超过每个粒子的正极化子/双极化子形成能,就可以根据自发电荷转移进行合理化的观察。电荷转移导致界面偶极子的形成,最大为2.1 eV。

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