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Young-Joon Park

Yonsei University · 材料科学

研究室紹介

Professor Young-Joon Park's research lab specializes in advanced materials development for energy storage and biomedical applications. The lab focuses on designing and engineering functional nanomaterials, particularly solid-state electrolytes for all-solid-state batteries, with an emphasis on enhancing stability, ionic conductivity, and process scalability. Additionally, the lab explores the integration of artificial intelligence in wearable and mobile health technologies for cardiovascular disease detection. A key research direction involves surface engineering and microstructural control of conductive metal-organic frameworks and inorganic electrolytes to enable next-generation energy and healthcare technologies.

solid-state batteriessurface engineeringconductive MOFsAI in healthcareionic conductors

Research Overview

Papers
35
Total Citations
649
Papers (5y)
14
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
14total
2022
2023
2024
2025
2026
Citations per year (5y)
154total
20222023202420252026

Selected Papers

15
1
Article|256 citations·1996
Abnormal growth of faceted (WC) grains in a (Co) liquid matrix
Young Joon Park, Nong‐Moon Hwang, Duk Yong Yoon
SJR Q1Metallurgical and Materials Transactions A
Mechanical EngineeringEngineering
2
Article|58 citations·2023
Ultrathin Superhydrophobic Coatings for Air‐Stable Inorganic Solid Electrolytes: Toward Dry Room Application for All‐Solid‐State Batteries
Kyu Tae Kim, Jehoon Woo, Young‐Soo Kim, Sihyeon Sung, Changhyun Park, Chanhee Lee, Young Joon Park, Hyun‐Wook Lee, Kyusung Park, Yoon Seok Jung
SJR Q1Advanced Energy MaterialsOA

Abstract Inorganic solid electrolytes (SEs), such as sulfides and halides, are crucial for developing practical all‐solid‐state batteries (ASSBs) owing to their high ionic conductivities and mechanical sinterabilities. However, their sensitivity to humid air necessitates stringent dry‐room conditions during processing, which increases production costs. This study demonstrates that ultrathin (≈5 nm) superhydrophobic polydimethylsiloxane (PDMS) or fluorinated PDMS (F‐PDMS) protective layers can en

Electrical and Electronic EngineeringEngineering
3
Article|53 citations·2019
Comparative study of solid oxide fuel cell-combined heat and power system designs for optimal thermal integration
Young Joon Park, Gyubin Min, Jongsup Hong
SJR Q1Energy Conversion and Management
Materials ChemistryMaterials Science
4
Article|49 citations·2022
Artificial Intelligence for Detection of Cardiovascular- Related Diseases from Wearable Devices: A Systematic Review and Meta-Analysis
이솔암, 추유성, 류지승, 박영준, 양세정, 고상백
https://www.eymj.org/DOIx.php?id=10.3349/ymj.2022.63.S93

Purpose: Several artificial intelligence (AI) models for the detection and prediction of cardiovascular-related diseases, including arrhythmias, diabetes, and sleep apnea, have been reported. This systematic review and meta-analysis aimed to identify AI models developed for or applicable to wearable and mobile devices for diverse cardiovascular-related diseases. Materials and Methods: The searched databases included Medline, Embase, and Cochrane Library. For AI models for atrial fibrillation (AF

5
Article|45 citations·2020
1D thermodynamic modeling for a solid oxide fuel cell stack and parametric study for its optimal operating conditions
Gyubin Min, Young Joon Park, Jongsup Hong
SJR Q1Energy Conversion and Management
Materials ChemistryMaterials Science
6
Article|41 citations·1997
The effects of the stress dependence of atomic diffusivity on stress evolution due to electromigration
Young Joon Park, Carl V. Thompson
SJR Q2Journal of Applied Physics

The evolution of mechanical stress resulting from electromigration in a polycrystalline thin film Al interconnect is simulated as a function of current density assuming zero stress boundary conditions. A polygranular cluster region is introduced into lines with otherwise bamboo microstructures, and results in a pair of atomic flux divergence sites and a tensile-compressive stress dipole. In the tensile stress region, the atomic diffusivity is higher than that in the compressive stress region, le

Electronic, Optical and Magnetic MaterialsMaterials Science
7
Article|31 citations·1999
Gas Chromatographic Organic Acid Profiling Analysis of Brandies and Whiskeys for Pattern Recognition Analysis
Young Joon Park, Kyoung Rae Kim, Hyun Jung Kim
SJR Q1Journal of Agricultural and Food Chemistry

An efficient gas chromatographic profiling and pattern recognition method is described for brandy and whiskey samples according to their organic acid contents. It involves solid-phase extraction of organic acids using Chromosorb P with subsequent conversion to stable tert-butyldimethylsilyl derivatives for the direct analysis by capillary column gas chromatography and gas chromatography-mass spectrometry. A total of 12 organic acids were reproducibly identified in liquor samples (1 mL). When the

SpectroscopyChemistry
8
Article|30 citations·2020
Thermodynamic analysis of a solid oxide co-electrolysis cell system for its optimal thermal integration with external heat supply
Gyubin Min, Young Joon Park, Jongsup Hong
SJR Q1Energy Conversion and Management
Materials ChemistryMaterials Science
9
Article|18 citations·2021
Operational guidelines for a residential solid oxide fuel cell-combined heat and power system with an optimal system layout design
Young Joon Park, Gyubin Min, Jongsup Hong
SJR Q1Energy Conversion and Management
Materials ChemistryMaterials Science
10
Article|13 citations·2025
Surface Fluorination Shielding of Sulfide Solid Electrolytes for Enhanced Electrochemical Stability in All‐Solid‐State Batteries
Kyu Tae Kim, Jae‐Seung Kim, Ki Heon Baeck, Jong Seok Kim, Juhyoun Park, Bong Soo, Young Joon Park, Yong Bae Song, Changhyun Park, Soon‐Jae Jung, Hyun‐Wook Lee, Kyulin Lee
SJR Q1Advanced MaterialsOA

Abstract Despite their high Li + conductivity and deformability, sulfide solid electrolytes suffer from limited electrochemical stability, which prevents all‐solid‐state batteries (ASSBs) from reaching their full performance potential. Herein, a facile surface fluorination strategy is presented for Li 6 PS 5 Cl using XeF 2 as a solid‐state fluorinating agent, enabling a scalable dry process at moderate temperatures. An ≈37.3 nm‐thick uniform fluorinated layer is coated on an Li 6 PS 5 Cl surface

Electrical and Electronic EngineeringEngineering
11
Article|9 citations·2024
Molecular-level network engineering of crosslinker towards high-performance carbon nanotube fiber
Jae Seo Park, Ji Yong Park, Jeong Seob Kim, Yosub Kang, Sang Min Kim, Ki Su Song, Hyun Woo Kim, Young Joon Park, Gwansik Kim, Kyonghwa Song, Seokmin Lee, Deokwoo Yun
SJR Q1Composites Part B Engineering
Materials ChemistryMaterials Science
12
Article|9 citations·2021
Sensitivity analysis of a solid oxide co-electrolysis cell system with respect to its key operating parameters and optimization with its performance map
Gyubin Min, Young Joon Park, Saeyoung Choi, Jongsup Hong
SJR Q1Energy Conversion and Management
Materials ChemistryMaterials Science
13
Article|7 citations·2023
Optimal method for the anode exhaust gas recycling of atmospheric solid oxide fuel cell-combined heat and power systems
Young Joon Park, Gyubin Min, Jongsup Hong
SJR Q1Journal of Power Sources
Materials ChemistryMaterials Science
14
Article|5 citations·2024
Effects of multidimensional-assembly-structures of CNTs on the evolution of various properties of resultant products therefrom
Young Shik Cho, Ji Yong Park, Jae Won Lee, Jeong Seob Kim, Hyun Woo Kim, Young Joon Park, Seung Jae Yang, Chong Rae Park, Seung Jae Yang, Chong Rae Park
SJR Q1Materials Chemistry and Physics
Materials ChemistryMaterials Science
15
Article|5 citations·2019
Thermodynamic Optimization of a SOFC-CHP System with Exhaust Gas Recirculation Employing an In-House Numerical Simulator
Young Joon Park, Gyubin Min, Jongsup Hong
ECS Transactions

Thermodynamic optimization of a solid oxide fuel cell-combined heat and power system is the first step for its commercialization. This study suggests a thermodynamically optimized SOFC-CHP system through numerical modeling and simulation. An in-house numerical simulator is developed, which utilizes design variables of system components and their empirical correlations to enhance the accuracy of simulation. It is developed with C# language, equipped with graphical user interface by making use of

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryElectrical and Electronic EngineeringFluid Flow and Transfer ProcessesMechanical EngineeringElectronic, Optical and Magnetic MaterialsSpectroscopy

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