Search Results - "MIN SIK PARK"

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  1. 1

    Functionality of Dual‐Phase Lithium Storage in a Porous Carbon Host for Lithium‐Metal Anode by Kim, Junyoung, Lee, Jaewoo, Yun, Jonghyeok, Choi, Seung Hyun, Han, Sang A, Moon, Janghyuk, Kim, Jung Ho, Lee, Jong‐Won, Park, MinSik

    Published in Advanced functional materials (01-04-2020)
    “…Lithium (Li) metal is regarded as the most attractive anode material for high‐energy Li batteries, but it faces unavoidable challenges—uncontrollable dendritic…”
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  2. 2

    Generalized self-assembly of scalable two-dimensional transition metal oxide nanosheets by Sun, Ziqi, Liao, Ting, Dou, Yuhai, Hwang, Soo Min, Park, Min-Sik, Jiang, Lei, Kim, Jung Ho, Dou, Shi Xue

    Published in Nature communications (12-05-2014)
    “…Two-dimensional (2D) transition metal oxide systems present exotic electronic properties and high specific surface areas, and also demonstrate promising…”
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  3. 3

    Ferrocene and Cobaltocene Derivatives for Non-Aqueous Redox Flow Batteries by Hwang, Byunghyun, Park, Min-Sik, Kim, Ketack

    Published in ChemSusChem (01-01-2015)
    “…Ferrocene and cobaltocene and their derivatives are studied as new redox materials for redox flow cells. Their high reaction rates and moderate solubility are…”
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  4. 4

    Effective Polysulfide Rejection by Dipole-Aligned BaTiO3 Coated Separator in Lithium-Sulfur Batteries by Yim, Taeeun, Han, Seung Ho, Park, Nam Hwan, Park, Min-Sik, Lee, Ji Hoon, Shin, Jaeho, Choi, Jang Wook, Jung, Yongju, Jo, Yong Nam, Yu, Ji-Sang, Kim, Ki Jae

    Published in Advanced functional materials (15-11-2016)
    “…Although the exceptional theoretical specific capacity (1672 mAh g−1) of elemental sulfur makes lithium–sulfur (Li–S) batteries attractive for upcoming…”
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  5. 5

    Strategic Approaches to the Dendritic Growth and Interfacial Reaction of Lithium Metal Anode by Han, Sang A, Qutaish, Hamzeh, Park, MinSik, Moon, Janghyuk, Kim, Jung Ho

    Published in Chemistry, an Asian journal (13-12-2021)
    “…Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batteries. Even so, the unavoidable features of Li dendritic…”
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  6. 6

    Functionalized Electrode Additive for Simultaneously Reinforcing Chemo‐Mechanical Properties of Millimeter‐Thick Dry‐Electrode for High‐Energy All‐Solid‐State Batteries by Kim, Hyun‐seung, Jung, Jae Yup, Kim, KyungSu, Hwang, Chihyun, Yu, Jisang, Park, MinSik, Cho, Woosuk

    Published in Advanced energy materials (01-04-2024)
    “…Abstract Voids are widely disseminated in a powder when mixed, and hence the typical dry‐electrode preparation method yields a sparse dry‐electrode because the…”
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  7. 7

    Hierarchical Porous Carbon by Ultrasonic Spray Pyrolysis Yields Stable Cycling in Lithium–Sulfur Battery by Jung, Dae Soo, Hwang, Tae Hoon, Lee, Ji Hoon, Koo, Hye Young, Shakoor, Rana A, Kahraman, Ramazan, Jo, Yong Nam, Park, Min-Sik, Choi, Jang Wook

    Published in Nano letters (13-08-2014)
    “…Utilizing the unparalleled theoretical capacity of sulfur reaching 1675 mAh/g, lithium–sulfur (Li–S) batteries have been counted as promising enablers of…”
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  8. 8

    Preparation and Electrochemical Properties of SnO2 Nanowires for Application in Lithium-Ion Batteries by Park, Min-Sik, Wang, Guo-Xiu, Kang, Yong-Mook, Wexler, David, Dou, Shi-Xue, Liu, Hua-Kun

    Published in Angewandte Chemie International Edition (01-01-2007)
    “…Long and thin: SnO2 nanowires with tetragonal structure were successfully synthesized by a thermal evaporation method without any conventional metal catalysts…”
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  9. 9

    Core–Shell Structured Silicon Nanoparticles@TiO2–x /Carbon Mesoporous Microfiber Composite as a Safe and High-Performance Lithium-Ion Battery Anode by Jeong, Goojin, Kim, Jae-Geun, Park, Min-Sik, Seo, Minsu, Hwang, Soo Min, Kim, Young-Ugk, Kim, Young-Jun, Kim, Jung Ho, Dou, Shi Xue

    Published in ACS nano (25-03-2014)
    “…A core–shell structured Si nanoparticles@TiO2–x /C mesoporous microfiber composite has been synthesized by an electrospinning method. The core–shell composite…”
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  10. 10

    Flattening of Lithium Plating in Carbonate Electrolytes Enabled by All‐In‐One Separator by Kim, Yong Min, Kim, Hyun‐seung, Park, Bo Keun, Yang, Jin Hyeok, Leem, Han Jun, Yu, Jisang, Kim, Siwon, Kim, So Yeun, Lee, Jong‐Won, Park, MinSik, Kim, Ki Jae

    “…The uncontrollable dendritic growth of metallic lithium during repeated cycling in carbonate electrolytes is a crucial obstacle hindering the practical use of…”
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  11. 11

    Robust Design of Dual‐Phasic Carbon Cathode for Lithium–Oxygen Batteries by Pham, Hien Thi Thu, Kim, Yeongsu, Kim, Young‐Jun, Lee, Jong‐Won, Park, MinSik

    Published in Advanced functional materials (01-08-2019)
    “…Given that the performance of a lithium–oxygen battery (LOB) is determined by the electrochemical reactions occurring on the cathode, the development of…”
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  12. 12

    Nanoarchitectonics of lithium ion pathways through pores in a carbon framework for improving the storage capability and reversibility of lithium metal anode by Han, Sang A, Suh, Joo Hyeong, Park, MinSik, Kim, Jung Ho

    Published in Applied organometallic chemistry (01-10-2023)
    “…The utilization of lithium (Li) metal as an anode has attracted significant attention for high‐energy Li batteries. Unfortunately, uncontrollable Li dendrite…”
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  13. 13

    The effects of surface modification on carbon felt electrodes for use in vanadium redox flow batteries by Kim, Ki Jae, Kim, Young-Jun, Kim, Jae-Hun, Park, Min-Sik

    Published in Materials chemistry and physics (15-12-2011)
    “…► We observed the physical and chemical changes on the surface of carbon felts after various surface modifications. ► The surface area and chemistry of…”
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  14. 14

    Over‐ and Hyper‐Lithiated Oxides as Sacrificial Cathodes for Lithium‐Ion Batteries by Lee, Wontae, Byeon, Yun Seong, Lee, Seongeun, Kong, Sungho, Park, MinSik, Yoon, Won‐Sub

    Published in Advanced energy materials (08-03-2024)
    “…Abstract By incorporating sacrificial lithium (Li) sources during electrode fabrication, researchers aim to address the challenge of initial capacity loss due…”
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  15. 15

    Solid‐State Lithium Batteries: Bipolar Design, Fabrication, and Electrochemistry by Jung, Kyu‐Nam, Shin, Hyun‐Seop, Park, MinSik, Lee, Jong‐Won

    Published in ChemElectroChem (01-08-2019)
    “…There are increasing demands for large‐scale energy storage technologies for efficient utilization of clean and sustainable energy sources. Solid‐state lithium…”
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  16. 16

    3D Pathways Enabling Highly‐Efficient Lithium Reservoir for Fast‐Charging Batteries by Han, Sang A, Suh, Joo Hyeong, Kim, Junyoung, Park, Sungmin, Jeong, Won Ung, Shimada, Yusuke, Kim, Jung Ho, Park, MinSik, Dou, Shi Xue

    “…Enhancing the mobility of lithium‐ions (Li+) through surface engineering is one of major challenges facing fast‐charging lithium‐ion batteries (LIBs). In case…”
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  17. 17

    Facile Synthesis of Carbon-Coated Silicon/Graphite Spherical Composites for High-Performance Lithium-Ion Batteries by Kim, So Yeun, Lee, Jaewoo, Kim, Bo-Hye, Kim, Young-Jun, Yang, Kap Seung, Park, Min-Sik

    Published in ACS applied materials & interfaces (18-05-2016)
    “…A high-performance Si/carbon/graphite composite in which Si nanoparticles are attached onto the surface of natural graphite by carbonization of coal-tar pitch…”
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  18. 18

    Multi‐Interface Strategy for Electrode Tailoring Toward Fast‐Charging Lithium‐Ion Batteries by Choi, Jeong‐Hee, Lee, Hae Gon, Lee, Min‐Ho, Lee, Sang‐Min, Kang, Junhee, Suh, Joo Hyeong, Park, MinSik, Lee, Jong‐Won

    Published in Advanced functional materials (01-08-2024)
    “…Thick and dense graphite anodes used in lithium‐ion batteries (LIBs) suffer from sluggish reaction kinetics at the electrode level, causing Li metal plating on…”
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  19. 19

    Metal‐organic framework derived porous structures towards lithium rechargeable batteries by Han, Sang A, Qutaish, Hamzeh, Lee, Jong‐Won, Park, MinSik, Kim, Jung Ho

    Published in EcoMat (Beijing, China) (01-02-2023)
    “…Batteries are a promising technology in the field of electrical energy storage and have made tremendous strides in recent few decades. In particular,…”
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  20. 20

    Isolation of Solid Solution Phases in Size‐Controlled LixFePO4 at Room Temperature by Kobayashi, Genki, Nishimura, Shin‐ichi, Park, MinSik, Kanno, Ryoji, Yashima, Masatomo, Ida, Takashi, Yamada, Atsuo

    Published in Advanced functional materials (10-02-2009)
    “…State‐of‐the‐art LiFePO4 technology has now opened the door for lithium ion batteries to take their place in large‐scale applications such as plug‐in hybrid…”
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