Wang Qiankun, Frisch Johannes, Herder Martin, Hecht Stefan, Koch Norbert
Institut für Physik & IRIS Adlershof, Humboldt-Universität zu Berlin, Brook-Taylor-Straße 6, 12489, Berlin, Germany.
Department of Chemistry & IRIS Adlershof, Humboldt-Universität zu Berlin, Brook-Taylor-Straße 2, 12489, Berlin, Germany.
Chemphyschem. 2017 Apr 5;18(7):722-727. doi: 10.1002/cphc.201601442. Epub 2017 Feb 15.
Light-switching-induced changes in the electronic properties of photochromic diarylethene, i.e., 1,2-bis(2-methyl-5-p-tolylthiophen-3-yl)cyclopent-1-ene (DAE1), thin films at interfaces to a gold electrode and two polymer semiconductors are investigated by direct and inverse photoelectron spectroscopy. The photoisomerization is achieved by in situ irradiation of ultraviolet and visible light. Efficient and reversible switching between the open and closed isomers of DAE1 is evidenced at all interfaces, with profound impact on the energy-level alignment. The frontier occupied level of DAE1 changes by 0.8 eV with respect to the Au Fermi level upon switching. Corresponding sizable changes in the electron and transport level offsets between the two polymers and DAE1 in its open and closed form are determined. This gives rise to fundamentally different functionality of these interfaces in terms of charge transport. Our study proves the viability of light-controlled energy-level manipulation at various interfaces in photoswitchable opto-electronic devices.
通过直接和逆光电子能谱研究了光致变色二芳基乙烯(即1,2-双(2-甲基-5-对甲苯基噻吩-3-基)环戊-1-烯(DAE1))薄膜在与金电极和两种聚合物半导体界面处的光开关诱导的电子性质变化。通过原位照射紫外光和可见光实现光异构化。在所有界面处都证明了DAE1的开环和闭环异构体之间高效且可逆的切换,这对能级排列有深远影响。切换时,DAE1的前沿占据能级相对于金费米能级变化0.8 eV。确定了两种聚合物与开环和闭环形式的DAE1之间电子和传输能级偏移的相应显著变化。这导致这些界面在电荷传输方面具有根本不同的功能。我们的研究证明了在光开关光电器件的各种界面处进行光控能级操纵的可行性。