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Author Correction: UV-cured Polymer Solid Electrolyte Reinforced using a Ceramic-Polymer Composite Layer for Stable Solid-State Li Metal Batteries |
Hye Min Choi, Su Jin Jun, Jinhong Lee, Myung-Hyun Ryu, Hyeyoung Shin, Kyu-Nam Jung |
J. Electrochem. Sci. Technol. 2023;14(3):301-301. Published online August 2, 2023 DOI: https://doi.org/10.33961/jecst.2022.00829.e1 |
Author Correction: UV-cured Polymer Solid Electrolyte Reinforced using a Ceramic-Polymer Composite Layer for Stable Solid-State Li Metal Batteries UV-cured Polymer Solid Electrolyte Reinforced using a Ceramic-Polymer Composite Layer for Stable Solid-State Li Metal Batteries All solid lithium polymer batteries with a novel composite polymer electrolyte Ceramic-in-polymer solid electrolyte reinforced by in-situ polymerization of PEGDA interlayer for lithium metal battery Realizing high performance of solid-state lithium metal batteries by flexible ceramic/polymer hybrid solid electrolyte All-solid-state lithium secondary battery with ceramic/polymer composite electrolyte Stabilization of the polymer electrolyte/lithium metal electrode interface with increased ion conduction using PEO polymer/low molecular weight PE-b-PEO diblock copolymer composite bi-layer films Electrochemical properties of a ceramic-polymer-composite-solid electrolyte for Li-ion batteries All-solid-state lithium-sulfur batteries assembled by composite polymer electrolyte and amorphous sulfur/rGO composite cathode Three–dimensional fiber network reinforced polymer electrolyte for dendrite–free all–solid–state lithium metal batteries |