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Nature Communications|November 24, 2019
Thermally activated delayed fluorescence with 7% external quantum efficiency from a light-emitting electrochemical cellPetter Lundberg, Youichi Tsuchiya, E Mattias Lindh, et al.ACS Applied Materials & Interfaces|September 11, 2018
Challenging Conventional Wisdom: Finding High-Performance Electrodes for Light-Emitting Electrochemical CellsJin Xu, Andreas Sandström, E Mattias Lindh, et al.Scientific Reports|July 15, 2023
Chemical doping to control the in-situ formed doping structure in light-emitting electrochemical cellsGunel Huseynova, Joan Ràfols-Ribé, Etienne Auroux, et al.Journal of the American Chemical Society|December 7, 2006
Light-emitting electrochemical cells with millimeter-sized interelectrode gap: low-voltage operation at room temperatureJoon-Ho Shin, Ludvig EdmanThe Journal of Physical Chemistry. B|January 9, 2010
Facile fabrication of efficient organic CMOS circuitsAndrzej Dzwilewski, Piotr Matyba, Ludvig EdmanPhysical Review. E, Statistical, Nonlinear, and Soft Matter Physics|May 15, 2002
Analysis of diffusion in a solid polymer electrolyte in the context of a phase-separated systemLudvig Edman, Anders Ferry, Greger OräddJournal of the American Chemical Society|March 4, 2009
Photo-induced and resist-free imprint patterning of fullerene materials for use in functional electronicsAndrzej Dzwilewski, Thomas Wågberg, Ludvig EdmanACS Applied Materials & Interfaces|January 29, 2014
Improving the performance of light-emitting electrochemical cells by optical designNikolai Kaihovirta, Christian Larsen, Ludvig EdmanNature Communications|April 3, 2020
Author Correction: Design rules for light-emitting electrochemical cells delivering bright luminance at 27.5 percent external quantum efficiencyShi Tang, Andreas Sandström, Petter Lundberg, et al.Nature Communications|November 1, 2017
Design rules for light-emitting electrochemical cells delivering bright luminance at 27.5 percent external quantum efficiencyShi Tang, Andreas Sandström, Petter Lundberg, et al.Pageof 43