arXiv · 1911.06875
Ambipolar perovskite light electrochemical cell for transparent display devices
Abstract
Perovskite light-emitting diodes (PeLEDs) have recently attracted great research luminescence at room temperature in interest for their narrow emissions and solution processability. Remarkable progress has been achieved PeLEDs in recent years. Here we present the new configuration of ambipolar transparent perovskite light emitting device. The combination of voltage induced p-i-n formation and ionically doped carbon electrodes and allows electroluminescence in forward and reverse bias. Here we present easy-to-do transparent ambipolar light emitting subpixel based on inorganic perovskite and single wall carbon nanotubes. For this experiment PeLEDs were assembled using a glass substrate with ITO stripes as bottom electrode; spin-coated CsPbBr3/I3:PEO composite as emissive layer; single wall carbon nanotubes deposited by a simple press transfer process at room temperature. We demonstrate a concept of stacked multicolor tandem pixel. Stack of transparent light emitting units might allow fine color tuning in parallel tandem connection without segregation compared to mixed halide perovskites. This configuration conforms pixel downsizing and make to fabrication of emissive multijunction pixels in a stack.
Explore related subjects
Keep this discovery
Arthur Ishteev, Ross Haroldson, Dmitry Gets, Alexey Tsapenko, Masoud Alahbakhshi, Jiyoung Moon, Patricia Martinez, Khabib Usupov, Albert Nasibulin, Sergey Makarov, Anvar Zakhidov. 2019-11-15. Ambipolar perovskite light electrochemical cell for transparent display devices. https://arxiv.org/abs/1911.06875
Cite the original work for its findings. Save a collection to share your selection of sources.