High mobility emissive organic semiconductor
Citations Over TimeTop 1% of 2015 papers
Abstract
The integration of high charge carrier mobility and high luminescence in an organic semiconductor is challenging. However, there is need of such materials for organic light-emitting transistors and organic electrically pumped lasers. Here we show a novel organic semiconductor, 2,6-diphenylanthracene (DPA), which exhibits not only high emission with single crystal absolute florescence quantum yield of 41.2% but also high charge carrier mobility with single crystal mobility of 34 cm(2) V(-1) s(-1). Organic light-emitting diodes (OLEDs) based on DPA give pure blue emission with brightness up to 6,627 cd m(-2) and turn-on voltage of 2.8 V. 2,6-Diphenylanthracene OLED arrays are successfully driven by DPA field-effect transistor arrays, demonstrating that DPA is a high mobility emissive organic semiconductor with potential in organic optoelectronics.
Related Papers
- → BODIPY derivatives as n-type organic semiconductors: Isomer effect on carrier mobility(2011)34 cited
- → Rational In Silico Design of an Organic Semiconductor with Improved Electron Mobility(2017)30 cited
- → GIANT MAGNETO-ELECTROLUMINESCENCE FROM HYBRID SPIN-ORGANIC LIGHT EMITTING DIODES(2014)6 cited
- → Effect of Charge Mobility for Organic Photovoltaic Devices(2006)1 cited
- → Investigation into the modeling of field-effect mobility in disordered organic semiconductors(2005)1 cited