Young Hwa Jung

About Young Hwa Jung

Young Hwa Jung, With an exceptional h-index of 30 and a recent h-index of 27 (since 2020), a distinguished researcher at Pohang University of Science and Technology, specializes in the field of Powder diffraction, Electrode materials for rechargeable batteries, Next-generation batteries, Crystal structure of inorganic co.

His recent articles reflect a diverse array of research interests and contributions to the field:

Toward a Nanoscale‐Defect‐Free Ni‐Rich Layered Oxide Cathode Through Regulated Pore Evolution for Long‐Lifespan Li Rechargeable Batteries

Mitigating the P2–O2 phase transition of Ni–Co–Mn based layered oxide for improved sodium-ion batteries via interlayered structural modulation

Structural Reconstruction of Hydrothermally Grown BaTiO3 Nanoparticles Based on High-Resolution Synchrotron Powder X-ray Diffraction

X-ray absorption spectromicroscopy of Na0. 67Fe0. 25Mn0. 75O2 and Na0. 67Li0. 2Fe0. 2Mn0. 6O2 primary particles for Na-ion batteries

Disordered Structure and Reversible Phase Transformation from K‐Birnessite to Zn‐Buserite Enable High‐Performance Aqueous Zinc‐Ion Batteries

Dendrite-free Zn anodes enabled by a hierarchical zincophilic TiO2 layer for rechargeable aqueous zinc-ion batteries

Self-standing Co2. 4Sn0. 6O4 nano rods as high performance anode materials for sodium-ion battery and investigation on its reaction mechanism

Mitigating Jahn–Teller Effects by Fast Electrode Kinetics Inducing Charge Redistribution (Adv. Funct. Mater. 19/2022).

Young Hwa Jung Information

University

Position

Ph.D. Beamline Division Pohang Accelerator Laboratory (PAL)

Citations(all)

3445

Citations(since 2020)

2067

Cited By

2414

hIndex(all)

30

hIndex(since 2020)

27

i10Index(all)

50

i10Index(since 2020)

43

Email

University Profile Page

Google Scholar

Young Hwa Jung Skills & Research Interests

Powder diffraction

Electrode materials for rechargeable batteries

Next-generation batteries

Crystal structure of inorganic co

Top articles of Young Hwa Jung

Toward a Nanoscale‐Defect‐Free Ni‐Rich Layered Oxide Cathode Through Regulated Pore Evolution for Long‐Lifespan Li Rechargeable Batteries

Advanced Functional Materials

2024/1

Mitigating the P2–O2 phase transition of Ni–Co–Mn based layered oxide for improved sodium-ion batteries via interlayered structural modulation

Materials Today Energy

2023/12/1

Structural Reconstruction of Hydrothermally Grown BaTiO3 Nanoparticles Based on High-Resolution Synchrotron Powder X-ray Diffraction

Crystal Growth & Design

2023/6/15

Young Hwa Jung
Young Hwa Jung

H-Index: 23

X-ray absorption spectromicroscopy of Na0. 67Fe0. 25Mn0. 75O2 and Na0. 67Li0. 2Fe0. 2Mn0. 6O2 primary particles for Na-ion batteries

Journal of Physics and Chemistry of Solids

2023/6/1

Young Hwa Jung
Young Hwa Jung

H-Index: 23

Mikang Kim
Mikang Kim

H-Index: 3

Disordered Structure and Reversible Phase Transformation from K‐Birnessite to Zn‐Buserite Enable High‐Performance Aqueous Zinc‐Ion Batteries

Energy & Environmental Materials

2023/6

Dendrite-free Zn anodes enabled by a hierarchical zincophilic TiO2 layer for rechargeable aqueous zinc-ion batteries

Applied Surface Science

2022/12/30

Self-standing Co2. 4Sn0. 6O4 nano rods as high performance anode materials for sodium-ion battery and investigation on its reaction mechanism

Chemical Engineering Journal

2022/7/1

Mitigating Jahn–Teller Effects by Fast Electrode Kinetics Inducing Charge Redistribution (Adv. Funct. Mater. 19/2022).

Advanced Functional Materials

2022/5

Metal-to-metal charge transfer driven by electropositive species for stable anionic redox

2022/2/8

Selective anionic redox and suppressed structural disordering enabling high‐energy and long‐life Li‐rich layered‐oxide cathode

Advanced Energy Materials

2021/12

Designing High Energy Sodium‐Ion Battery Cathodes by Utilizing P2/O3 Biphasic Structure and Lithium Honeycomb Ordering

Small

2021/7

Na 2 Fe 2 F 7: a fluoride-based cathode for high power and long life Na-ion batteries

Energy & Environmental Science

2021

Exploring Lithium Doping in the Layered Transition-Metal Oxides As Cathode Materials for Sodium-Ion Batteries

Electrochemical Society Meeting Abstracts prime2020

2020/11/23

Young Hwa Jung
Young Hwa Jung

H-Index: 23

Do-Kyung Kim
Do-Kyung Kim

H-Index: 4

New insight on open‐structured sodium vanadium oxide as high‐capacity and long life cathode for Zn–ion storage: structure, electrochemistry, and first‐principles calculation

Advanced Energy Materials

2020/10

Solution-processable, crystalline π-conjugated two-dimensional polymers with high charge carrier mobility

Chem

2020/8/6

Structural and thermodynamic understandings in Mn‐based sodium layered oxides during anionic redox

Advanced Science

2020/8

Duho Kim
Duho Kim

H-Index: 15

Young Hwa Jung
Young Hwa Jung

H-Index: 23

(Invited) Controlling the Ordering of Na+ and Vacancy By Ti-Doping in P2-Na0.67Co1-XTixO2 for High Energy and Power Density Cathode Materials in …

Electrochemical Society Meeting Abstracts 237

2020/5/1

Young Hwa Jung
Young Hwa Jung

H-Index: 23

Yung-Eun Sung
Yung-Eun Sung

H-Index: 56

An optimized approach toward high energy density cathode material for K-ion batteries

Energy Storage Materials

2020/5/1

Facile migration of potassium ions in a ternary P3-type K0. 5 [Mn0. 8Fe0. 1Ni0. 1] O2 cathode in rechargeable potassium batteries

Energy Storage Materials

2020/3/1

P2‐K0.75[Ni1/3Mn2/3]O2 Cathode Material for High Power and Long Life Potassium‐Ion Batteries

Advanced Energy Materials

2020/2

Young Hwa Jung
Young Hwa Jung

H-Index: 23

Jongsoon Kim
Jongsoon Kim

H-Index: 30

See List of Professors in Young Hwa Jung University(Pohang University of Science and Technology)