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Towards maximized volumetric capacity via pore-coordinated design for large-volume-change lithium-ion battery anodes
Ma, J (Ma, Jiyoung), Sung, J (Sung, Jaekyung), Hong, J (Hong, Jaehyung), Chae, S (Chae, Sujong), Kim, N (Kim, Namhyung), Choi, SH (Choi, Seong-Hyeon), Nam, G (Nam, Gyutae), Son, Y (Son, Yoonkook), Kim, SY (Kim, Sung Youb), Ko, M (Ko, Minseong), Cho, J (Cho, Jaephil)...More..
NATURE COMMUNICATIONS, 201901

62

Fast-charging high-energy lithium-ion batteries via implantation of amorphous silicon nanolayer in edge-plane activated graphite anodes
Kim, N (Kim, Namhyung), Chae, S (Chae, Sujong), Ma, J (Ma, Jiyoung), Ko, M (Ko, Minseong), Cho, J (Cho, Jaephil)
NATURE COMMUNICATIONS, 201710

63

One-to-One Comparison of Graphite-Blended Negative Electrodes Using Silicon Nanolayer-Embedded Graphite versus Commercial Benchmarking Materials for High-Energy Lithium-Ion Batteries
Chae S., Kim N., Ma J., Cho J., Ko M.
Advanced Energy Materials, 201708

64

Scalable synthesis of silicon-nanolayer-embedded graphite for high-energy lithium-ion batteries
Ko M., Chae S., Ma J., Kim N., Lee H.-W., Cui Y., Cho J.
Nature Energy, 201609

65

Recent Strategies for Stabilizing Interfaces in All-solid-state Lithium Metal Batteries
김남형, 설윤정
Korean Journal of Chemical Engineering, 202501