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Titlebook: Light-Emitting Electrochemical Cells; Concepts, Advances a Rubén D. Costa Book 2017 Springer International Publishing AG 2017 Solid-state t

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Morphology Engineering and Industrial Relevant Device Processing of Light-Emitting Electrochemical Cemitting electrochemical cells (LEC) by industrially relevant technologies. This is centered on the utilization of the polymer solid electrolytes as a mean to tune device performance, film morphology, and rheological properties. Tunable parameters include the choice of molecular weight, material rat
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Development of Cyclometallated Iridium(III) Complexes for Light-Emitting Electrochemical CellsECs) and highlights the ligand-design strategies employed to enhance device stability, operating efficiency and (critically for LECs in which the ion mobilities are typically low) turn-on times. Typical iridium-containing ionic transition metal complexes (Ir-iTMCs) belong to the family of [Ir(C^N).(
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Recent Advances on Blue-Emitting Iridium(III) Complexes for Light-Emitting Electrochemical CellsDuring the past decade, blue-emitting iridium(III) complexes have been pursued as the emitting materials for blue LECs. In this chapter, the recent advances on blue-emitting iridium(III) complexes for LECs are discussed based on the four molecular design strategies, namely, (i) modification on the a
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White Emission from Exciplex-Based Polymer Light-Emitting Electrochemical Cellsenergy- and cost-efficient. This has created an urgent need for highly efficient white-emitting LECs. Technologies have to be developed for realizing efficient white emission, suited to the simple structure of LEC devices. Utilizing exciplex emission is one means of obtaining white emission. In this
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Luminescent Cationic Copper(I) Complexes: Synthesis, Photophysical Properties and Application in Ligs presented in Chaps. ., ., and ., the traditional ionic transition metal complexes (iTMC) used in LECs have traditionally been based on iridium(III) and ruthenium(II) complexes. Although the performance of iTMC-based LECs has been greatly enhanced, issues related to environmental and high costs hav
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Small Molecule-Based Light-Emitting Electrochemical Cellsbility of a wide range of synthetic procedures and the ability to fine-tune their photophysical and electrochemical properties. Fascinated by the high performances of SMs in organic light-emitting diodes (OLEDs), considerable amount of effort has been put forward by material scientist to find effici
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