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Round-Robin Test of a Light-Emitting Electrochemical Cell: Establishing a Reference Protocol for Quality Research

Anton Kirch, Kumar Saumya, Joan Ràfols-Ribé, Shi Tang, Christian Larsen, Ajay Kumar Poonia, Nicolò Maccaferri, Chang-Ki Moon, João Pedro Ferreira Assunção, Frank Nüesch, Sandra Gellner, Rubing Bai, Weiao Yang, Zuowei Liu, Daniel Tordera, Sergio Martínez-Saiz, Shun-ichiro Ito, Koshi Oi, Felix Hergenhan, Karl S. Schellhammer, Sebastian Reineke, Taishi Takenobu, Henk J. Bolink, Yufeng Hu, Zhiwei Liu, Ekaterina Nannen, Roland Hany, Malte C. Gather, Ludvig Edman

arXiv:2606.04006Published May 27, 20260 citations
  • cond-mat.soft
  • cond-mat.mtrl-sci
  • physics.app-ph

Abstract

Emerging technologies benefit from a jointly established reference protocol, which can lower the bar of entry for new researchers while serving as a calibration standard for established actors. The light-emitting electrochemical cell (LEC) combines electrochemistry and optoelectronics in an intricate manner, and it can by that enable sustainable and commercially relevant printing fabrication of emissive thin-film devices. However, LEC performance is sensitive to a range of material and processing parameters, which frequently results in inadequate, or even erroneous, device evaluation. With this in mind, we present herein a LEC reference protocol, which details the sourcing of materials and the procedures and parameters for robust device fabrication and operation. The protocol has been tested across nine international research groups, and the collected results from this interlaboratory round-robin test confirm that good LEC performance can be reproducibly obtained following our protocol. We also identify common pitfalls that can arise during LEC development, and present practical steps for attaining optimum LEC performance. We hope this reference protocol will improve the quality of future LEC research and serve as a guide for future researchers entering this vibrant field.

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