Chandresh Abhinav, Liu Xiaojing, Wöll Christof, Heinke Lars
Karlsruhe Institute of Technology (KIT) Institute of Functional Interfaces (IFG) Hermann-von-Helmholtz-Platz 1 Eggenstein-Leopoldshafen 76344 Germany.
Adv Sci (Weinh). 2021 Jan 21;8(7):2001884. doi: 10.1002/advs.202001884. eCollection 2021 Apr.
Structurally well-defined, crystalline organic/organic heterojunctions between C- and anthracene-based semiconductors are realized via layer-by-layer deposition of metal-organic framework, MOF, thin films. As demonstrated by X-ray diffraction, perfect epitaxy is achieved by adjusting the lattice constants of the two different MOFs. Deposition of top electrodes allows to fabricate p-n as well as n-p devices. Measurements of the electrical properties reveal the presence of high-performance diodes, with a current on/off ratio of up to 6 orders of magnitude and an ideality factor close to unity. The crystalline nature of the abrupt organic/organic heterojunction provides the basis for a rational, simulation-based optimization and tailoring of such organic semiconductor interfaces.
通过金属有机框架(MOF)薄膜的逐层沉积,实现了基于C和蒽的半导体之间结构明确的晶体有机/有机异质结。如X射线衍射所示,通过调整两种不同MOF的晶格常数可实现完美外延。顶部电极的沉积使得能够制造p-n以及n-p器件。电学性质测量揭示了高性能二极管的存在,其电流开/关比高达6个数量级,理想因子接近1。这种陡峭的有机/有机异质结的晶体性质为基于合理模拟的此类有机半导体界面的优化和定制提供了基础。