The Swiss-Army-Knife Self-Assembled Monolayer: Improving Electron Injection, Stability, and Wettability of Metal Electrodes with a One-Minute Process
Autor: | Iva Angelova, Eric Mankel, Patrick Reiser, Milan Alt, Uwe H. F. Bunz, Wolfram Jaegermann, Annemarie Pucci, Tobias Rödlmeier, Janusz Schinke, Tobias Glaser, Sabina Hillebrandt, Uli Lemmer, Gerardo Hernandez-Sosa, Wolfgang Kowalsky, Manuel Hamburger, Robert Lovrincic, Malte Jesper, Kaja Deing |
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Rok vydání: | 2016 |
Předmět: |
Materials science
Organic field-effect transistor Contact resistance Nanotechnology Self-assembled monolayer 02 engineering and technology 010402 general chemistry 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences 0104 chemical sciences Electronic Optical and Magnetic Materials Biomaterials chemistry.chemical_compound chemistry Chemical engineering X-ray photoelectron spectroscopy Electrode Monolayer Electrochemistry Polyethylene terephthalate Work function 0210 nano-technology |
Zdroj: | Advanced Functional Materials. 26:3172-3178 |
ISSN: | 1616-301X |
DOI: | 10.1002/adfm.201505386 |
Popis: | A novel Self-assembled Monolayer (SAM) forming molecule bisjulolidyldisulfide (9,9'-disulfanediylbis(2,3,6,7-tetrahydro-1H,5H-pyrido[3,2,1-ij]quinoline)) is demonstrated which lowers the work function of metal surfaces by ≈1.2 eV and can be deposited in a 1 min process. Bisjulolidyldisulfide exists in a stable disulfide configuration prior to surface exposure and can therefore be stored, handled, and processed in ambient conditions. SAM from bisjulolidyldisulfide are deposited on metal surfaces (Au and Ag), including inkjet printed Ag on polyethylene terephthalate substrates, investigated by photoelectron and infrared spectroscopy, and used as electrodes in n-type organic field effect transistor (OFET). Treatment of electrodes in OFET devices with with bisjulolidyldisulfide-SAMs reduces the contact resistance by two orders of magnitude and improves shelf life with respect to pristine metal electrodes. The presented treatment also increases the surfaces wettability and thereby facilitates solution processing of a subsequent layer. These beneficial properties for device performance, processing, and stability, combined with ease of preparation and handling, render this SAM-forming molecule an excellent candidate for the high-throughput production of flexible electronic devices. |
Databáze: | OpenAIRE |
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