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Results 91-100 of 189 (Search time: 0.005 seconds).

  • Choi, Junhyeok
  • Lee, Yong Min
  • Kim, Sung Yeol
  • 2023-11
  • Choi, Junhyeok. (2023-11). Phase-field analysis of the effects of particle size, diffusivities, and mechanical properties on the cracking of silicon nanoparticle. Applied Physics Letters, 123(20). doi: 10.1063/5.0179804
  • American Institute of Physics Inc.
  • View : 294
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  • Kim, Jong Seok
  • Jung, Seungwon
  • Kwak, Hiram
  • Han, Yoonjae
  • Kim, Suhwan
  • Lim, Jongwoo
  • Lee, Yong Min
  • Jung, Yoon Seok
  • 2023-01
  • Kim, Jong Seok. (2023-01). Synergistic halide-sulfide hybrid solid electrolytes for Ni-rich cathodes design guided by digital twin for all-solid-State Li batteries. Energy Storage Materials, 55, 193–204. doi: 10.1016/j.ensm.2022.11.038
  • Elsevier BV
  • View : 287
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  • Kang, Dongyoon
  • Jin, Dahee
  • Moon, Janghyuk
  • Dzakpasu, Cyril Bubu
  • Lee, Hyobin
  • Choi, Seungyeop
  • Jo, Taejin
  • Lee, Hongkyung
  • Ryou, Sun-Yul
  • Lee, Yong Min
  • 2023-01
  • Kang, Dongyoon. (2023-01). AgNO3-preplanted Li metal powder electrode: Preliminary formation of lithiophilic Ag and a Li3N-rich solid electrolyte interphase. Chemical Engineering Journal, 452(2). doi: 10.1016/j.cej.2022.139409
  • Elsevier B.V.
  • View : 447
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  • Park, Sun Ho
  • Lee, Hyobin
  • Park, Joonam
  • Roh, Youngjoon
  • Byun, Seoungwoo
  • Lim, Jaejin
  • Jung, Seungwon
  • Kim, Nayeon
  • Lee, Kang Taek
  • Lee, Yong Min
  • 2023-02
  • Park, Sun Ho. (2023-02). A microcrack propagation-based life prediction model for lithium-ion batteries with Ni-rich cathode materials. Journal of Energy Storage, 58. doi: 10.1016/j.est.2022.106420
  • Elsevier Ltd
  • View : 557
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  • Byun, Seoungwoo
  • Liu, Zhu
  • Shin, Dong Ok
  • Kim, Kyuman
  • Choi, Jaecheol
  • Roh, Youngjoon
  • Jin, Dahee
  • Jung, Seungwon
  • Kim, Kyung-Geun
  • Lee, Young-Gi
  • et al
  • 2024
  • Byun, Seoungwoo. (2024). Alkali Metal Ion Substituted Carboxymethyl Cellulose as Anode Polymeric Binders for Rapidly Chargeable Lithium-Ion Batteries. Energy & Environmental Materials, 7(1). doi: 10.1002/eem2.12509
  • Wiley
  • View : 603
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  • Latifatu Mohammed
  • Bismark Boating
  • Manasi Mwemezi
  • Louis Hamenu
  • Alfred Madzvamuse
  • Alex Nyarko
  • Mutala Mohammed
  • William Oduro
  • Francis Boateng Agyenim
  • Lee, Yong Min
  • et al
  • 2022-11
  • Latifatu Mohammed. (2022-11). EMI-BF4 electrolyte and Al2O3/PVDF-HFP modified PE separator for high capacitance retention and cycle stability in supercapacitors. Korean Journal of Chemical Engineering, 39(11), 3003–3011. doi: 10.1007/s11814-022-1210-4
  • 한국화학공학회
  • View : 379
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  • Song, Jihun
  • Lee, Hyobin
  • Kim, Suhwan
  • Kang, Dongyoon
  • Jung, Seungwon
  • Lee, Hongkyung
  • Kwon, Tae-Soon
  • Lee, Yong Min
  • 2022-05
  • Song, Jihun. (2022-05). A Thermo-Electrochemical Model of 18.5 V/50 Ah Battery Module for Railway Vehicles. Frontiers in Materials, 9. doi: 10.3389/fmats.2022.824168
  • Frontiers Media
  • View : 556
  • Download : 31
  • Phiri, Isheunesu
  • Kim, Jungmin
  • Mpupuni, Carlos Tafara
  • Ssendagire, Kennedy
  • Kim, Jeong-Tae
  • Lee, Yong Min
  • Ryou, Sun-Yul
  • 2022-10
  • Phiri, Isheunesu. (2022-10). Keeping it Simple: Free-Standing, Flexible Cathodic Electrodes for High Rate, Long Cycling Lithium Batteries. ACS Applied Energy Materials, 5(11), 13535–13543. doi: 10.1021/acsaem.2c02211
  • American Chemical Society
  • View : 307
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  • Jo, Youngseong
  • Jin, Dahee
  • Lim, Minhong
  • Lee, Hyuntae
  • An, Hyeongguk
  • Seo, Jiyeon
  • Kim, Gunyoung
  • Ren, Xiaodi
  • Lee, Yong Min
  • Lee, Hongkyung
  • 2023-01
  • Jo, Youngseong. (2023-01). Structural and Chemical Evolutions of Li/Electrolyte Interfaces in Li-Metal Batteries: Tracing Compositional Changes of Electrolytes under Practical Conditions. Advanced Science, 10(2). doi: 10.1002/advs.202204812
  • Wiley-VCH Verlag
  • View : 303
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  • Phiri, Isheunesu
  • Kim, Jungmin
  • Afrifah, Vera Afumaa
  • Kim, Jeong-Tae
  • Lee, Yong Min
  • Ryou, Sun-Yul
  • 2022-11
  • Phiri, Isheunesu. (2022-11). Dendrite Suppression by Lithium-Ion Redistribution and Lithium Wetting of Lithium Zeolite Li2(Al2Si4O12) in Liquid Electrolytes. ACS Applied Materials & Interfaces, 14(44), 49689–49699. doi: 10.1021/acsami.2c12512
  • American Chemical Society
  • View : 444
  • Download : 0