Electronic structure of the conduction band upon the formation of ultrathin fullerene films on the germanium oxide surface
- 作者: Komolov A.S.1, Lazneva E.F.1, Gerasimova N.B.1, Panina Y.A.1, Baramygin A.V.1, Zashikhin G.D.1
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隶属关系:
- St. Petersburg State University
- 期: 卷 58, 编号 6 (2016)
- 页面: 1257-1261
- 栏目: Surface Physics and Thin Films
- URL: https://bakhtiniada.ru/1063-7834/article/view/197904
- DOI: https://doi.org/10.1134/S106378341606024X
- ID: 197904
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详细
The results of the investigation of the electronic structure of the conduction band in the energy range 5–25 eV above the Fermi level EF and the interfacial potential barrier upon deposition of aziridinylphenylpyrrolofullerene (APP-C60) and fullerene (C60) films on the surface of the real germanium oxide ((GeO2)Ge) have been presented. The content of the oxide on the (GeO2)Ge surface has been determined using X-ray photoelectron spectroscopy. The electronic properties have been measured using the very low energy electron diffraction (VLEED) technique in the total current spectroscopy (TCS) mode. The regularities of the change in the fine structure of total current spectra (FSTCS) with an increase in the thickness of the APP-C60 and C60 coatings to 7 nm have been investigated. A comparison of the structures of the FSTCS maxima for the C60 and APP-C60 films has made it possible to reveal the energy range (6–10 eV above the Fermi level EF) in which the energy states are determined by both the π* and σ* states and the FSTCS spectra have different structures of the maxima for the APP-C60 and unsubstituted C60 films. The formation of the interfacial potential barrier upon deposition of APP-C60 and C60 on the (GeO2)Ge surface is accompanied by an increase in the work function of the surface Evac–EF by the value of 0.2–0.3 eV, which corresponds to the transfer of the electron density from the substrate to the organic films under investigation. The largest changes occur with an increase in the coating thickness to 3 nm, and with further deposition of APP-C60 and C60, the work function of the surface changes only slightly.
作者简介
A. Komolov
St. Petersburg State University
编辑信件的主要联系方式.
Email: a.komolov@spbu.ru
俄罗斯联邦, Universitetskaya nab. 7–9, St. Petersburg, 199034
E. Lazneva
St. Petersburg State University
Email: a.komolov@spbu.ru
俄罗斯联邦, Universitetskaya nab. 7–9, St. Petersburg, 199034
N. Gerasimova
St. Petersburg State University
Email: a.komolov@spbu.ru
俄罗斯联邦, Universitetskaya nab. 7–9, St. Petersburg, 199034
Yu. Panina
St. Petersburg State University
Email: a.komolov@spbu.ru
俄罗斯联邦, Universitetskaya nab. 7–9, St. Petersburg, 199034
A. Baramygin
St. Petersburg State University
Email: a.komolov@spbu.ru
俄罗斯联邦, Universitetskaya nab. 7–9, St. Petersburg, 199034
G. Zashikhin
St. Petersburg State University
Email: a.komolov@spbu.ru
俄罗斯联邦, Universitetskaya nab. 7–9, St. Petersburg, 199034
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