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Results 11-20 of 189 (Search time: 0.005 seconds).

  • Yoon, Byeolhee
  • Park, Jinkyu
  • Lee, Jinhon
  • Kim, Seokwoo
  • Ren, Xiaodi
  • Lee, Yong Min
  • Kim, Hee-Tak
  • Lee, Hongkyung
  • Ryou, Myung-Hyun
  • 2019-09
  • Yoon, Byeolhee. (2019-09). High-Rate Cycling of Lithium-Metal Batteries Enabled by Dual-Salt Electrolyte-Assisted Micropatterned Interfaces. ACS Applied Materials & Interfaces, 11(35), 31777–31785. doi: 10.1021/acsami.9b05492
  • American Chemical Society
  • View : 899
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  • Byun, Seoungwoo
  • Yu, Jung-Han
  • Choi, Jaecheol
  • Yun, Sukhwan
  • Roh, Youngjoon
  • Dzakpasu, Cyril Bubu
  • Park, Sun Ho
  • Oh, Jong-Gil
  • Hong, Bo Ki
  • Lee, Yong Min
  • 2020-04
  • Byun, Seoungwoo. (2020-04). Unraveling the cohesive and interfacial adhesive strengths of electrodes for automotive fuel cells. doi: 10.1016/j.jpowsour.2020.227928
  • Elsevier BV
  • View : 728
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Improving the Cycling Performance of Lithium-Ion Battery Si/Graphite Anodes Using a Soluble Polyimide Binder

  • Oh, Jeonghun
  • Jin, Dahee
  • Kim, Kyuman
  • Song, Danoh
  • Lee, Yong Min
  • Ryou, Myung-Hyun
  • 2017-11
  • Oh, Jeonghun. (2017-11). Improving the Cycling Performance of Lithium-Ion Battery Si/Graphite Anodes Using a Soluble Polyimide Binder. ACS Omega, 2(11), 8438–8444. doi: 10.1021/acsomega.7b01365
  • America Chemical Society
  • View : 859
  • Download : 455
  • Ahn, Jinhyeok
  • Park, Joonam
  • Kim, Ju Young
  • Yoon, Sukeun
  • Lee, Yong Min
  • Hong, Seungbum
  • Lee, Young-Gi
  • Phatak, Charudatta
  • Cho, Kuk Young
  • 2019-08
  • Ahn, Jinhyeok. (2019-08). Insights into Lithium Surface: Stable Cycling by Controlled 10 μm Deep Surface Relief, Reinterpreting the Natural Surface Defect on Lithium Metal Anode. doi: 10.1021/acsaem.9b00805
  • American Chemical Society
  • View : 627
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  • Lee, Byong-June
  • Kang, Tong-Hyun
  • Lee, Ha-Young
  • Samdani, Jitendra
  • Jung, Yongju
  • Zhang, Chunfei
  • Yu, Zhou
  • Xu, Gui-Liang
  • Cheng, Lei
  • Byun, Seoungwoo
  • et al
  • 2020-06
  • Lee, Byong-June. (2020-06). Revisiting the Role of Conductivity and Polarity of Host Materials for Long-Life Lithium-Sulfur Battery. Advanced Energy Materials, 10(22), 1903934. doi: 10.1002/aenm.201903934
  • Wiley-VCH Verlag
  • View : 744
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  • Kim, Ju Young
  • Jung, Seungwon
  • Kang, Seok Hun
  • Lee, Myeong Ju
  • Jin, Dahee
  • Shin, Dong Ok
  • Lee, Young-Gi
  • Lee, Yong Min
  • 2022-01
  • Kim, Ju Young. (2022-01). All-solid-state hybrid electrode configuration for high-performance all-solid-state batteries: Comparative study with composite electrode and diffusion-dependent electrode. Journal of Power Sources, 518. doi: 10.1016/j.jpowsour.2021.230736
  • Elsevier BV
  • View : 511
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  • Kim, Nayeon
  • Byun, Seoungwoo
  • Jin, Dahee
  • Dzakpasu, Cyril Bubu
  • Park, Sun Ho
  • Lee, Hyungjin
  • Hong, Seung-Tae
  • Lee, Yong Min
  • 2022-02
  • Kim, Nayeon. (2022-02). Electrode Alignment: Ignored but Important Design Parameter in Assembling Coin-Type Full Lithium-Ion Cells. Journal of the Electrochemical Society, 169(2). doi: 10.1149/1945-7111/ac4f23
  • Electrochemical Society, Inc.
  • View : 652
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  • 박선호
  • 오은택
  • 박시영
  • 임지훈
  • 최진혁
  • 이용민
  • 2020-06
  • 박선호. (2020-06). 정전류/정출력 고속충전 방식에 따른 리튬이온전지의 열화 비교 연구. doi: 10.18770/KEPCO.2020.06.02.173
  • Korea Electric Power Corporation
  • View : 702
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  • Kim, Ju Young
  • Jung, Seungwon
  • Kang, Seok Hun
  • Park, Joonam
  • Lee, Myeong Ju
  • Jin, Dahee
  • Shin, Dong Ok
  • Lee, Young-Gi
  • Lee, Yong Min
  • 2022-01
  • Kim, Ju Young. (2022-01). Graphite-Silicon Diffusion-Dependent Electrode with Short Effective Diffusion Length for High-Performance All-Solid-State Batteries. Advanced Energy Materials, 12(3), 2103108. doi: 10.1002/aenm.202103108
  • Wiley-VCH Verlag
  • View : 582
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  • Park, Joonam
  • Bae, Kyung Taek
  • Kim, Dohwan
  • Jeong, Woo Young
  • Nam, Jieun
  • Lee, Myeong Ju
  • Shin, Dong Ok
  • Lee, Young-Gi
  • Lee, Hongkyung
  • Lee, Kang Taek
  • et al
  • 2021-01
  • Park, Joonam. (2021-01). Unraveling the limitations of solid oxide electrolytes for all-solid-state electrodes through 3D digital twin structural analysis. Nano Energy, 79. doi: 10.1016/j.nanoen.2020.105456
  • Elsevier
  • View : 628
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