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HyukSu Han

Hanyang University · Engineering

About the Lab

Professor HyukSu Han's research lab specializes in advanced materials development with a focus on functional nanomaterials, metallic alloys for additive manufacturing, and electrocatalysts for sustainable energy applications. The lab investigates microstructure-property relationships in titanium-based materials processed via selective laser melting (SLM), particularly emphasizing post-processing treatments to optimize mechanical performance and reduce residual stresses. A key research direction involves designing high-performance electrocatalysts—especially Pd-based systems—for fuel cell applications, targeting enhanced activity and durability in formic acid oxidation. The lab also explores geometric and electronic effects in transition metal complexes, particularly Jahn-Teller distortions, to improve oxygen evolution reaction (OER) efficiency in water electrolysis.

additive manufacturingelectrocatalyststitanium alloysmicrostructure-property relationshipsfuel cells

Research Overview

Papers
29
Total Citations
235
Papers (5y)
25
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
25total
2019
2023
2024
2025
2026
Citations per year (5y)
79total
20192023202420252026

Selected Papers

15
1
Article|83 citations·1995
The Boundary Element Method for the Solution of the Backward Heat Conduction Equation
HyukSu Han, D.B. Ingham, Yafei Yuan
SJR Q1Journal of Computational Physics
Mechanics of MaterialsEngineering
2
Article|55 citations·2007
Controlling the Hydrophobicity of Submicrometer Silica Spheres via Surface Modification for Nanocomposite Applications
Zhijian Wu, HyukSu Han, Woojoo Han, Bumsang Kim, Kyung Hyun Ahn, Kangtaek Lee
SJR Q1Langmuir

We control the hydrophobicity of submicrometer silica spheres by modifying their surface with -CH3, -CH=CH2, -(CH2)(2)CH3, -CH2(CH2)(4)CH2-, -C(6)H(5), -(CH2)(7)CH3, and -(CH2)(11)CH3 groups through a modified one-step process. The scanning electron microscopy (SEM), quasi-elastic light scattering (QELS), UV-visible spectra, nitrogen sorption, and water vapor adsorption methods are used to characterize the particles. The SEM micrographs of the particles demonstrate that the modified particles ar

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
3
Article|21 citations·2023
Effect on microstructural and mechanical properties of selective laser melted pure Ti parts using stress relief heat-treatment process
Seung Jun Han, Gyung Bae Bang, Won Rae Kim, Chan Yun Kim, Hyun-Su Kang, HyukSu Han, Taeg Woo Lee, Hyung Giun Kim
SJR Q1Journal of Materials Research and TechnologyOA

This study investigated the correlation between the microstructure and the mechanical properties of pure Ti specimens manufactured via selective laser melting (SLM) using the stress relief heat-treatment process. Similar heat treatments were performed at a rate of 10 °C/min with a dwell time of 2 h to reach post-treatment temperatures ranging from of 490 to 890 °C in intervals of 100 °C. Phase change analysis using X-ray diffraction was conducted to verify the effects of the post-treatment proce

Mechanical EngineeringEngineering
4
Article|15 citations·1997
The artificial boundary conditions for incompressible materials on an unbounded domain
HyukSu Han, Weizhu Bao
SJR Q1Numerische Mathematik
Computational MechanicsEngineering
5
Article|14 citations·2025
Jahn‐Teller Effect: Impact of Distortion on Oxygen Electrocatalysis
Ashish Gaur, Jatin Sharma, Gagandeep Kaur, Sungwook Mhin, HyukSu Han
SJR Q1Advanced Functional Materials

Abstract The efficiency of water electrolysis is constrained by the substantial energy requirements of the anodic oxygen evolution reaction (OER) process. It is crucial to solve the issue for efficient and energy‐efficient device manufacture. Geometric distortion in transition metal complexes significantly affects their performance. The Jahn‐Teller (J.T.) distortion is a geometric distortion that results in various electronic and structural alterations in transition metal complexes. Recently, th

Renewable Energy, Sustainability and the EnvironmentEnergy
6
Article|11 citations·2024
Empowering Tri‐Functional Palladium's Catalytic Activity and Durability in Electrocatalytic Formic Acid Oxidation Reaction via Innovative Self‐Caging and Alloying Strategies
Chan‐Woo Lee, Sun Young Jung, Jeong Ho Ryu, Gyeom Seong Jeon, Ashish Gaur, Min Su Cho, Ghulam Ali, Mingony Kim, Kyung Yoon Chung, Arpan Kumar Nayak, Seoyoon Shin, Jiseok Kwon
SJR Q1Advanced ScienceOA

Direct formic acid fuel cells (DFAFCs) stand out for portable electronic devices owing to their ease of handling, abundant fuel availability, and high theoretical open circuit potential. However, the practical application of DFAFCs is hindered by the unsatisfactory performance of electrocatalysts for the sluggish anodic formic acid oxidation reaction (FAOR). Palladium (Pd) based nanomaterials have shown promise for FAOR due to their highly selective reaction mechanism, but maintaining high elect

Renewable Energy, Sustainability and the EnvironmentEnergy
7
Article|8 citations·2024
Exploring pyrolusite β-MnO2 as a robust support for noble metal catalysts in proton exchange membrane water electrolysis
Nur Tursina, Ashish Gaur, Min Su Cho, Mingony Kim, Kyung Yoon Chung, Sungwook Mhin, HyukSu Han
SJR Q1International Journal of Hydrogen Energy
Renewable Energy, Sustainability and the EnvironmentEnergy
8
Article|6 citations·2025
Recycling of Spent Cathode Carbon from Aluminum Electrolysis: Detoxification Approaches, Resource Utilization, and Environmental Perspectives
Narasimharao Kitchamsetti, A. L. F. de Barros, HyukSu Han, Sungwook Mhin
SJR Q2ChemElectroChemOA

During aluminum (Al) electrolysis, large amounts of spent cathode carbon (SCC) are generated, often contaminated with hazardous substances such as fluorides and cyanides. As a result, SCC is classified as a dangerous solid waste posing long‐term risks to ecosystems and human health if untreated. This review comprehensively analyzes the chemical composition, formation mechanisms, and environmental hazards of SCC, and summarizes current physical and chemical remediation strategies. Unlike previous

Fluid Flow and Transfer ProcessesChemical Engineering
9
Article|6 citations·2025
Effect of down surface energy density on surface roughness and microstructure of pure titanium fabricated by selective laser melting
Seung Jun Han, Taeg Woo Lee, Gun-Hee Kim, HyukSu Han, Hyun-Su Kang, Won Rae Kim, Hyung Giun Kim
SJR Q1Journal of Materials Research and TechnologyOA

Pure titanium (Ti), known for its exceptional corrosion resistance, high specific strength, and biocompatibility, is increasingly employed in patient-specific biomedical components and aerospace applications. While Selective Laser Melting (SLM) offers superior design flexibility and near-net-shape capabilities for fabricating complex geometries, the process still faces challenges in controlling the surface quality of down surface regions, where incomplete melting, powder adhesion, and steep ther

Mechanical EngineeringEngineering
10
Article|6 citations·2025
Effects of heat treatment below beta transus temperature on the microstructure and mechanical properties of Ti–6Al–4V alloy fabricated by selective laser melting
Jeong Heon Ha, Seung Jun Han, Taeg Woo Lee, In Yong Moon, Seon‐Jin Choi, HyukSu Han, Won Rae Kim, Hyun-Su Kang, Hyung Giun Kim
SJR Q1Journal of Materials Research and TechnologyOA

Ti–6Al–4V alloy fabricated via selective laser melting (SLM) inherently develops high residual stresses due to rapid cooling and steep thermal gradients. To address this, stress relief (SR) heat treatment was performed below the β-transus temperature (0.3–0.5 Tm) to enable atomic diffusion without triggering full phase transformation. This study investigates the effects of SR treatment on microstructural evolution, dislocation density, residual stress, and mechanical properties. Residual stress

Mechanical EngineeringEngineering
11
Article|3 citations·2025
Effects of direct hot isostatic pressing on microstructural, electrical and mechanical properties of selective laser melted pure copper
Seung Jun Han, Jeong Rae Kim, Gun-Hee Kim, Won Rae Kim, Woo Jin Hwang, Jong‐Hyeon Jeong, HyukSu Han, Hyun-Su Kang, Taeg Woo Lee, Hyung Giun Kim
SJR Q1Journal of Materials Research and TechnologyOA

This study investigates how energy density and subsequent hot isostatic pressing (HIP) affect the density, microstructure, electrical conductivity, and mechanical properties of pure copper (Cu) components fabricated by selective laser melting (SLM). Components were produced at three calculated energy densities 3.11, 6.22, and 9.34 J·mm -3 and then subjected to a thermo-mechanical HIP treatment (600 °C, 2000 bar, 2 h). As the as-built energy density increased during the SLM process, lack-of-fusio

Mechanical EngineeringEngineering
12
Article|3 citations·2017
Electrical properties of Fe doped Ni-Mn-Co-O cubic spinel nanopowders for temperature sensors
Kyoung Ryeol Park, Sungwook Mhin, HyukSu Han, Kang Min Kim, Kwang Bo Shim, Jung Il Lee, Jeong Ho Ryu
SJR Q3Journal of Ceramic Processing Research
Electrical and Electronic EngineeringEngineering
13
Article|2 citations·2025
La incorporation induced electronic structure tailoring of NiCr-layered double hydroxide for the water oxidation reaction
Jatin Sharma, Ashish Gaur, Seongmin Shin, Sungjun Kim, Daehae Kim, HyukSu Han
SJR Q1Applied Surface Science
Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|1 citations·2025
Enhanced hyroxyl adsorption capacity of NiFeLDH@NiCoHPi boosts water oxidation in anionic exchange membrane water electrolysis
Ashish Gaur, Joel Mathew John, Jatin Sharma, Seongmin Shin, Sung-Jun Kim, HyukSu Han
SJR Q1International Journal of Hydrogen Energy
Renewable Energy, Sustainability and the EnvironmentEnergy
15
Article|1 citations·2025
Atomically Dispersed Catalytic Sites for the Photoelectrochemical Water Splitting
Ashish Gaur, Jatin Sharma, Hae In Lee, Dong‐Ha Lim, HyukSu Han
SJR Q1Solar RRLOA

The development of green hydrogen generating technology is currently of the utmost importance. The photoelectrochemical water splitting (PECWS) is one of the primary methods for green hydrogen generation. Recently, individuals have been investigating atomically dispersed sites anchored on semiconductor supports for the PECWS. The single‐atom catalysts (SACs) offer very accurate catalytic sites which improve the reaction kinetics for both hydrogen and oxygen evolution reactions. This review empha

Renewable Energy, Sustainability and the EnvironmentEnergy

Research Areas

Renewable Energy, Sustainability and the EnvironmentMechanical EngineeringElectrical and Electronic EngineeringMechanics of MaterialsAtomic and Molecular Physics, and OpticsComputational Mechanics

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