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Published on: March 19, 2017
Solution-Processed OLEDs: A Critical Review and Methodology Proposal for Stack Optimization
Yassine Chiadmi1, Paul-Vahe Cicek2, Ricardo Izquierdo1
1Department of Electrical Engineering, École de Technologie Supérieure (ÉTS), 1100 Notre-Dame St. W, Montreal, QC H3C 1K3, Canada.
Abstract:
Solution-processed OLEDs represent a low-cost, scalable alternative to vacuum-deposited devices, particularly for flexible and large-scale applications. However, selecting compatible materials for each layer remains a complex task, further complicated by inconsistent documentation, solvent interactions, and limited reproducibility across the literature. This work presents a literature review and critical analysis of materials, solvents, and fabrication methods involved in solution-processed OLEDs, with particular attention to layer formulation, solvent orthogonality, and processing constraints. A Monte Carlo-based optimization framework is introduced as a proof of concept, aiming to formalize stack selection and explore viable combinations based on empirical constraints. The critical analysis highlights recurring issues in the field and advocates for a more structured, reproducibility-oriented approach to OLED design.
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