4.4 Article

Synthetic Strategy for the Development of Conjugated Polyelectrolytes as Cathode Interfacial Layers: Toward Sustainable Organic Devices

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WILEY-V C H VERLAG GMBH
DOI: 10.1002/macp.202300130

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cathode interfacial layers; conjugated polyelectrolytes; fluorenes; OLEDs; organic solar cells

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The use of conjugated polyelectrolytes (CPEs) as interfacial layers (ILs) is an effective strategy to improve the efficiency of organic light-emitting diodes (OLEDs), organic solar cells (OSCs), and organic transistors. This study reports the development of bifunctional poly[(2,7-(9,9'-bis(6'-diethoxylphosphorylhexyl)-fluorene)-alt-(2,7-(9,9'-bis(6?-trimethylammonium bromide)hexyl)-fluorene)] (PF-NBr-EP) as a cathode IL (CIL) for various electronic and optoelectronic devices. The properties of the CPEs containing phosphonate (EP) and ammonium (NBr) moieties, which were used to synthesize the PF-NBr-EP copolymer, were investigated to understand the behavior of the PF-NBr-EP chemical structure in the devices. The performance of OLEDs and OSCs incorporating different CILs was analyzed based on established active layers.
The use of conjugated polyelectrolytes (CPEs) as interfacial layers (ILs) to increase the efficiency of organic light-emitting diodes (OLEDs), organic solar cells (OSCs), and organic transistors is a well-established strategy. Here, the rational process is reported that led to develop the bifunctional poly[(2,7-(9,9'-bis(6'-diethoxylphosphorylhexyl)-fluorene)-alt-(2,7-(9,9'-bis(6?-trimethylammonium bromide)hexyl)-fluorene)] (PF-NBr-EP). PF-NBr-EP is successfully incorporated as a cathode IL (CIL) in diverse electronic and optoelectronic devices. The properties of two fluorene-based CPEs containing, respectively, phosphonate (EP) and ammonium (NBr) moieties used as building blocks for the synthesis of the PF-NBr-EP copolymer and their mixtures are investigated to evaluate the combined effect of the two moieties and therefore to gain insight into the behavior of PF-NBr-EP chemical structure in the devices. Additionally, the performance of OLEDs and OSCs is analyzed based on established active layers, incorporating all these neat and mixed CILs.

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