Abstract
The unique interaction of electrons and ions in film blends of light-emitting polymers and electrolytes can realize the operation of light-emitting electrochemical cells (LECs) in which voltage-induced dynamic p-n homojunctions achieve efficient light emission. A crucial issue is the compatibility between the light-emitting polymers and electrolytes; the phase incompatibility of polymers and electrolytes makes it difficult to prepare uniform film blends suitable for the light-emitting layers of LECs. Here, we report that the introduction of ester groups into a light-emitting polymer improves phase compatibility with an ionic liquid-based electrolyte with high electrochemical stability. The resulting uniform film blends of the light-emitting polymer and electrochemically stable ionic liquid contributed significantly to making LECs more efficient and brighter; 60 000 cd m -2 of luminance with a high efficiency of 9 cd A -1 was demonstrated. Furthermore, we found that the ester-substituted polymer could be applied as a host material such that efficient LECs based on a host-guest system were also demonstrated.
Cite
CITATION STYLE
Nagatsu, G., Sakanoue, T., Tane, S., Yonekawa, F., & Takenobu, T. (2018). An ester-substituted polyfluorene derivative for light-emitting electrochemical cells: Bright blue emission and its application in a host-guest system. Materials Chemistry Frontiers, 2(5), 952–958. https://doi.org/10.1039/C7QM00623C
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.