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Small (Weinheim an Der Bergstrasse, Germany)|June 17, 2025
Highly Conductive Li-Excess Oxide to Facilitate Durable Interfaces in All-Solid-State BatteriesJaewoo Jung, Min Jae You, Yoojin Hong, et al.The Journal of Physical Chemistry. B|July 21, 2006
Hydrogen storage in ni nanoparticle-dispersed multiwalled carbon nanotubesHyun-Seok Kim, Ho Lee, Kyu-Sung Han, et al.ACS Nano|October 10, 2025
Cationic Point Defect Fluoride to Improve Reaction Kinetics in (All) Solid-State Li BatteriesSeong Hee Jeong, Seungun Shin, Dongil Kim, et al.Xenotransplantation|July 16, 2015
Successful xenotransplantation with re-aggregated and encapsulated neonatal pig liver cells for treatment of mice with acute liver failureDong-Sik Ham, Min-Sang Song, Heon-Seok Park, et al.Chemsuschem|July 29, 2014
Unconventional pore and defect generation in molybdenum disulfide: application in high-rate lithium-ion batteries and the hydrogen evolution reactionKan Zhang, Hwan-Jin Kim, Jeong-Taik Lee, et al.Nature Communications|April 6, 2024
Overcoming low initial coulombic efficiencies of Si anodes through prelithiation in all-solid-state batteriesSo-Yeon Ham, Elias Sebti, Ashley Cronk, et al.Nature Communications|November 1, 2025
Lithium diffusion-controlled Li-Al alloy negative electrode for all-solid-state batteryYuju Jeon, Dong Ju Lee, Hongkui Zheng, et al.Nature Communications|January 2, 2025
Surface molecular engineering to enable processing of sulfide solid electrolytes in humid ambient airMengchen Liu, Jessica J Hong, Elias Sebti, et al.Nature Communications|February 27, 2026
A highly utilized and practical lithium-sulfur positive electrode enabled in all-solid-state batteriesAshley Cronk, Xiaowei Wang, Jin An Sam Oh, et al.Pageof 2