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Chemical Communications (Cambridge, England)|October 7, 2016
Superior electrochemical performance of N-doped nanocrystalline FeF3/C with a single-step solid-state processJangwook Lee, Byoungwoo Kang
Chemical Communications (Cambridge, England)|July 5, 2016
Novel and scalable solid-state synthesis of a nanocrystalline FeF3/C composite and its excellent electrochemical performanceJangwook Lee, Byoungwoo Kang
Physical Chemistry Chemical Physics : PCCP|July 19, 2016
Understanding abnormal potential behaviors at the 1st charge in Li2S cathode material for rechargeable Li-S batteriesYongjo Jung, Byoungwoo Kang
Nature|March 13, 2009
Battery materials for ultrafast charging and dischargingByoungwoo Kang, Gerbrand Ceder
ACS Applied Materials & Interfaces|September 20, 2022
High Initial Coulombic Efficiency of SiO Enabled by Controlling SiO2 Matrix CrystallizationGeunho Choi, Jeonghan Kim, Byoungwoo Kang
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|April 23, 2023
A New Class of High-Capacity Fe-Based Cation-Disordered Oxide for Li-Ion Batteries: Li-Fe-Ti-Mo OxideJieun Kim, Yongho Shin, Byoungwoo Kang
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|July 25, 2019
Erratum: Fast-Rate Capable Electrode Material with Higher Energy Density than LiFePO4 : 4.2V LiVPO4F Synthesized by Scalable Single-Step Solid-State ReactionMinkyung Kim, Seongsu Lee, Byoungwoo Kang
ACS Applied Materials & Interfaces|May 12, 2021
Further Improving Coulombic Efficiency and Discharge Capacity in LiNiO2 Material by Activating Sluggish ∼3.5 V Discharge ReactionChanggeun Bae, Nicolas Dupre, Byoungwoo Kang
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|October 25, 2016
Fast-Rate Capable Electrode Material with Higher Energy Density than LiFePO4: 4.2V LiVPO4F Synthesized by Scalable Single-Step Solid-State ReactionMinkyung Kim, Seongsu Lee, Byoungwoo Kang
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