首页 | 本学科首页   官方微博 | 高级检索  
     


Dynamic Photoswitching of Electron Energy Levels at Hybrid ZnO/Organic Photochromic Molecule Junctions
Authors:Qiankun Wang  Giovanni Ligorio  Valentin Diez‐Cabanes  David Cornil  Björn Kobin  Jana Hildebrandt  Marco Vittorio Nardi  Melanie Timpel  Stefan Hecht  Jérôme Cornil  Emil J W List‐Kratochvil  Norbert Koch
Affiliation:1. Institut für Physik & IRIS Adlershof, Humboldt‐Universit?t zu Berlin, Berlin, Germany;2. Institut für Physik, Institut für Chemie & IRIS Adlershof, Humboldt‐Universit?t zu Berlin, Berlin, Germany;3. Laboratory for Chemistry of Novel Materials, University of Mons, Mons, Belgium;4. Department of Chemistry & IRIS Adlershof, Humboldt‐Universit?t zu Berlin, Berlin, Germany;5. Department of Industrial Engineering, University of Trento, Trento, Italy;6. IMEM‐CNR, Institute of Materials for Electronics and Magnetism, Trento, Italy;7. Helmholtz‐Zentrum Berlin für Materialien und Energie GmbH, Berlin, Germany
Abstract:The functionality of interfaces in hybrid inorganic/organic (opto)electronic devices is determined by the alignment of the respective frontier energy levels at both sides of the heterojunctions. Controlling the interface electronic landscape is a key element for achieving favourable level alignment for energy and charge transfer processes. Here, it is shown that the electronic properties of polar ZnO surfaces can be reversibly modified using organic photochromic switches. By employing a range of surface characterization techniques combined with density functional theory calculations, it is demonstrated that self‐assembled monolayers (SAMs) of photochromic phosphonic acid diarylethenes (PA‐DAEs) can be employed to reversibly change the electronic properties of polar ZnO/SAM structures by light stimuli. The highest occupied molecular orbital level of PA‐DAE is raised by 0.7 eV and the lowest unoccupied one lowered by 0.9 eV, respectively, upon illumination by ultraviolet light and the levels shift back to their original position upon illumination by green light. The results thus provide a pathway to tailor hybrid interface electronic properties in a dynamic manner upon simple light illumination, which can be exploited to reversibly tune the electrical properties of photoswitchable (opto)electronic devices.
Keywords:density functional theory  energy level alignment  photochromic switches  self‐assembled monolayers  ZnO
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号