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사진
Byon, Hye Ryung (변혜령)
부교수, Department of Chemistry(화학과)
Research Area
Electrochemistry, Energy, Nanoscience
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    NO Title, Author(s) (Publication Title, Volume Issue, Page, Issue Date)
    1
    Machine learning assisted synthesis of lithium-ion batteries cathode materials

    Liow, Chi Hao; Kang, Hyeonmuk; Kim, Seunggu; et al, NANO ENERGY, v.98, 2022-07

    2
    Alteration of oxygen evolution mechanisms in layered LiCoO2 structures by intercalation of alkali metal ions

    Kim, Yohan; Kim, Seongmin; Shim, Minyoung; et al, JOURNAL OF MATERIALS CHEMISTRY A, v.10, no.20, pp.10967 - 10978, 2022-05

    3
    Unexpectedly Large Contribution of Oxygen to Charge Compensation Triggered by Structural Disordering: Detailed Experimental and Theoretical Study on a Li3NbO4-NiO Binary System

    Fukuma, Ryutaro; Harada, Maho; Zhao, Wenwen; et al, ACS CENTRAL SCIENCE, v.8, no.6, pp.775 - 794, 2022-05

    4
    Sodium fluoride-rich solid electrolyte interphase for sodium-metal and sodium-oxygen batteries

    Kim, Sujung; Jung, Younguk; Park, Jiwon; et al, BULLETIN OF THE KOREAN CHEMICAL SOCIETY, v.42, no.11, pp.1519 - 1523, 2021-11

    5
    Systematic Designs of Dicationic Heteroarylpyridiniums as Negolytes for Nonaqueous Redox Flow Batteries

    Ahn, Seongmo; Jang, Jin Hyeok; Kang, Jungtaek; et al, ACS ENERGY LETTERS, v.6, no.9, pp.3390 - 3397, 2021-09

    6
    Understanding the interfacial reactions of LiCoO2 positive electrodes in aqueous lithium-ion batteries dagger

    Oh, Hyunjeong; Yamagishi, Hirona; Ohta, Toshiaki; et al, MATERIALS CHEMISTRY FRONTIERS, v.5, no.9, pp.3657 - 3663, 2021-05

    7
    Thiazole-Linked Covalent Organic Framework Promoting Fast Two-Electron Transfer for Lithium-Organic Batteries

    Singh, Vikram; Kim, Jaewook; Kang, Bora; et al, ADVANCED ENERGY MATERIALS, v.11, no.17, 2021-05

    8
    Advances in electrochemical energy storage with covalent organic frameworks

    Singh, Vikram; Byon, Hye Ryungresearcher, MATERIALS ADVANCES, v.2, no.10, pp.3188 - 3212, 2021-05

    9
    Coverage of capping ligands determining the selectivity of multi-carbon products and morphological evolution of Cu nanocatalysts in electrochemical reduction of CO2

    Oh, Yusik; Park, Jiwon; Kim, Yohan; et al, JOURNAL OF MATERIALS CHEMISTRY A, v.9, no.18, pp.11210 - 11218, 2021-05

    10
    Tubular MoSSe/carbon nanotube electrodes for hybrid-ion capacitors

    Kim, Yena; Kim, Sujung; Hong, Misun; et al, ELECTROCHIMICA ACTA, v.374, 2021-04

    11
    Nanometer-Scale Surface Roughness of a 3-D Cu Substrate Promoting Li Nucleation in Li-Metal Batteries

    Jang, Taegyu; Kang, Jin-Hyuk; Kim, Sujung; et al, ACS APPLIED ENERGY MATERIALS, v.4, no.3, pp.2644 - 2651, 2021-03

    12
    Singlet Oxygen in Lithium-Oxygen Batteries

    Hong, Misun; Byon, Hye Ryungresearcher, Batteries & Supercaps, v.4, no.2, pp.286 - 293, 2021-02

    13
    Reducing Time to Discovery: Materials and Molecular Modeling, Imaging, Informatics, and Integration

    Hong, Seungbumresearcher; Liow, Chi Hao; Yuk, Jong Minresearcher; et al, ACS NANO, v.15, no.3, pp.3971 - 3995, 2021-02

    14
    Nanostructured LiMnO2 with Li3PO4 Integrated at the Atomic Scale for High-Energy Electrode Materials with Reversible Anionic Redox

    Sawamura, Miho; Kobayakawa, Sho; Kikkawa, Jun; et al, ACS CENTRAL SCIENCE, v.6, no.12, pp.2326 - 2338, 2020-12

    15
    One-pot production of ceria nanosheet-supported PtNi alloy nanodendrites with high catalytic performance toward methanol oxidation and oxygen reduction

    Kwon, Yongmin; Kim, Yena; Hong, Jong Wook; et al, JOURNAL OF MATERIALS CHEMISTRY A, v.8, no.48, pp.25842 - 25849, 2020-12

    16
    Lithium-Air Batteries: Air-Breathing Challenges and Perspective

    Kang, Jin-Hyuk; Lee, Jiyoung; Jung, Ji-Won; et al, ACS NANO, v.14, no.11, pp.14549 - 14578, 2020-11

    17
    Promoting lithium electrodeposition towards the bottom of 3-D copper meshes in lithium-based batteries

    Kim, Sujung; Kim, Yena; Nguyen, Chi Thang; et al, JOURNAL OF POWER SOURCES, v.472, pp.228495, 2020-10

    18
    Solid Electrolyte Interphase Revealing Interfacial Electrochemistry on Highly Oriented Pyrolytic Graphite in a Water-in-Salt Electrolyte

    Kim, Yena; Hong, Misun; Oh, Hyunjeong; et al, JOURNAL OF PHYSICAL CHEMISTRY C, v.124, no.37, pp.20135 - 20142, 2020-09

    19
    Naphthalene diimide as a two-electron anolyte for aqueous and neutral pH redox flow batteries

    Medabalmi, Veerababu; Sundararajan, Mahesh; Singh, Vikram; et al, JOURNAL OF MATERIALS CHEMISTRY A, v.8, no.22, pp.11218 - 11223, 2020-06

    20
    Mechanistic Study Revealing the Role of the Br-3(-)/Br-2 Redox Couple in CO2-Assisted Li-O-2 Batteries

    Mota, Filipe Marques; Kang, Jin-Hyuk; Jung, Younguk; et al, ADVANCED ENERGY MATERIALS, v.10, no.9, pp.1903486, 2020-03

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