首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Density of occupied and unoccupied states monitored during metal deposition onto phthalocyanine layers
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Density of occupied and unoccupied states monitored during metal deposition onto phthalocyanine layers

机译:在将金属沉积到酞菁层上的过程中监测占用状态和未占用状态的密度

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摘要

Phthalocyanine (Pc) materials find applications in electronic devices such as organic light emitting devices (OLEDs), solar cells, thin film transistors or gas sensors. The electronic properties at interfaces with different materials e.g. inorganic semiconductors or metals, usually dominate the device performance. Therefore the knowledge of the interface electronic properties is required. In the present work valence band photoemission spectroscopy (VB-PES) and inverse photoemission spectroscopy (IPES) were employed to determine the density of occupied and unoccupied states upon silver deposition onto layers of two phthalocyanines (H,Pc and CuPc). The two different Pc molecules give rise to very distinct behaviour already in the initial stage of silver deposition. While in the CuPc case no shift occurs in the energy levels, the H2Pc highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO) are shifting simultaneously by 0.3eV, i.e. the HOMO shifts away from the Fermi level while LUMO shifts towards the Fermi level. As the silver quantity increases the HOMO levels of both Pcs are shifting towards the Fermi level. When the Fermi level is resolved in the VB-PES spectra the H2Pc and CuPc characteristic features are smeared out to some extent. Shifts in HOMO and LUMO energy positions as well as chances in line shapes are discussed in terms of charge transfer and chemical reactions at the interfaces.
机译:酞菁(Pc)材料可用于电子设备中,例如有机发光设备(OLED),太阳能电池,薄膜晶体管或气体传感器。与不同材料(例如材料)的界面处的电子性能无机半导体或金属通常会影响设备性能。因此,需要了解接口电子特性。在本工作中,价带光发射光谱法(VB-PES)和逆光发射光谱法(IPES)用于确定银沉积在两种酞菁(H,Pc和CuPc)的层上时占据和未占据状态的密度。两种不同的Pc分子在银沉积的初始阶段就已经产生了非常不同的行为。在CuPc情况下,能级没有变化,而H2Pc最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)同时移动了0.3eV,即,HOMO从费米能级移开,而LUMO向费米水平。随着银含量的增加,两个PC的HOMO含量都向费米能级移动。当费米能级在VB-PES光谱中解析后,H2Pc和CuPc的特征会被抹去。根据界面处的电荷转移和化学反应,讨论了HOMO和LUMO能量位置的变化以及线形的机会。

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