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Yong Joon Park

Showing results (1-10 of 39) with videos related to

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Nanoscale Research Letters|January 7, 2012
Characterization of thermally aged AlPO4-coated LiCoO2 thin filmsEunhye Jung, Yong Joon Park
Chemical Communications (Cambridge, England)|December 4, 2014
Polyimide-wrapped carbon nanotube electrodes for long cycle Li-air batteriesChan Kyu Lee, Yong Joon Park
ACS Omega|March 3, 2020
Effect of Vinylethylene Carbonate and Fluoroethylene Carbonate Electrolyte Additives on the Performance of Lithia-Based CathodesSi Yeol Lee, Yong Joon Park
Nanoscale Research Letters|June 27, 2015
Li[Li0.2Ni 0.16Mn 0.56Co 0.08]O 2 Nanoparticle/Carbon Composite Using Polydopamine Binding Agent for Enhanced Electrochemical PerformanceSuk Bum Lim, Yong Joon Park
ACS Applied Materials & Interfaces|August 16, 2022
Interfacial Stabilization of Li<sub>2</sub>O-Based Cathodes by Malonic-Acid-Functionalized Fullerenes as a Superoxo-Radical Scavenger for Suppressing Parasitic ReactionsHee Jeong Im, Yong Joon Park
Scientific Reports|September 14, 2019
Lithia/(Ir, Li<sub>2</sub>IrO<sub>3</sub>) nanocomposites for new cathode materials based on pure anionic redox reactionSi Yeol Lee, Yong Joon Park
Nanoscale Research Letters|August 13, 2015
Carbon and Binder-Free Air Electrodes Composed of Co3O 4 Nanofibers for Li-Air Batteries with Enhanced Cyclic PerformanceChan Kyu Lee, Yong Joon Park
Scientific Reports|February 16, 2017
Polyimide-coated carbon electrodes combined with redox mediators for superior Li-O<sub>2</sub> cells with excellent cycling performance and decreased overpotentialSeon Hye Yoon, Yong Joon Park
Nanoscale Research Letters|December 18, 2019
Lithia-Based Nanocomposites Activated by Li<sub>2</sub>RuO<sub>3</sub> for New Cathode Materials Rooted in the Oxygen Redox ReactionByeong Gwan Lee, Yong Joon Park
Scientific Reports|June 1, 2019
Cathode coating using LiInO<sub>2</sub>-LiI composite for stable sulfide-based all-solid-state batteriesHwan Wook Kwak, Yong Joon Park
Pageof 4

Showing results (1-10 of 39) with videos related to

Sort By:
Pageof 4
Nanoscale Research Letters|January 7, 2012
Characterization of thermally aged AlPO4-coated LiCoO2 thin filmsEunhye Jung, Yong Joon Park
Chemical Communications (Cambridge, England)|December 4, 2014
Polyimide-wrapped carbon nanotube electrodes for long cycle Li-air batteriesChan Kyu Lee, Yong Joon Park
ACS Omega|March 3, 2020
Effect of Vinylethylene Carbonate and Fluoroethylene Carbonate Electrolyte Additives on the Performance of Lithia-Based CathodesSi Yeol Lee, Yong Joon Park
Nanoscale Research Letters|June 27, 2015
Li[Li0.2Ni 0.16Mn 0.56Co 0.08]O 2 Nanoparticle/Carbon Composite Using Polydopamine Binding Agent for Enhanced Electrochemical PerformanceSuk Bum Lim, Yong Joon Park
ACS Applied Materials & Interfaces|August 16, 2022
Interfacial Stabilization of Li<sub>2</sub>O-Based Cathodes by Malonic-Acid-Functionalized Fullerenes as a Superoxo-Radical Scavenger for Suppressing Parasitic ReactionsHee Jeong Im, Yong Joon Park
Scientific Reports|September 14, 2019
Lithia/(Ir, Li<sub>2</sub>IrO<sub>3</sub>) nanocomposites for new cathode materials based on pure anionic redox reactionSi Yeol Lee, Yong Joon Park
Nanoscale Research Letters|August 13, 2015
Carbon and Binder-Free Air Electrodes Composed of Co3O 4 Nanofibers for Li-Air Batteries with Enhanced Cyclic PerformanceChan Kyu Lee, Yong Joon Park
Scientific Reports|February 16, 2017
Polyimide-coated carbon electrodes combined with redox mediators for superior Li-O<sub>2</sub> cells with excellent cycling performance and decreased overpotentialSeon Hye Yoon, Yong Joon Park
Nanoscale Research Letters|December 18, 2019
Lithia-Based Nanocomposites Activated by Li<sub>2</sub>RuO<sub>3</sub> for New Cathode Materials Rooted in the Oxygen Redox ReactionByeong Gwan Lee, Yong Joon Park
Scientific Reports|June 1, 2019
Cathode coating using LiInO<sub>2</sub>-LiI composite for stable sulfide-based all-solid-state batteriesHwan Wook Kwak, Yong Joon Park
Pageof 4