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Youngsuk Nam

Korea Advanced Institute of Science and Technology · Engineering

About the Lab

Professor Youngsuk Nam's research lab specializes in the design and characterization of functional micro- and nanostructured surfaces for advanced heat transfer and fluid dynamics applications. The lab focuses on superhydrophobic and superhydrophilic surfaces, with key research directions including droplet dynamics, bubble nucleation and departure, capillary wicking in microstructures, and the durability of functional surfaces under dynamic liquid impacts. Their work combines experimental high-speed imaging, precise microfabrication techniques, and numerical modeling to develop next-generation thermal management systems for electronics and energy applications.

surface wettabilitymicrofluidicsthermal managementcapillary wickingdroplet dynamics

Research Overview

Papers
153
Total Citations
6,947
Papers (5y)
50
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
50total
2022
2023
2024
2025
2026
Citations per year (5y)
418total
20222023202420252026

Selected Papers

15
1
Article|198 citations·2016
The effects of surface wettability on the fog and dew moisture harvesting performance on tubular surfaces
Donghyun Seo, Junghun Lee, Choongyeop Lee, Youngsuk Nam
SJR Q1Scientific ReportsOA

The efficient water harvesting from air-laden moisture has been a subject of great interest to address world-wide water shortage issues. Recently, it has been shown that tailoring surface wettability can enhance the moisture harvesting performance. However, depending on the harvesting condition, a different conclusion has often been reported and it remains unclear what type of surface wettability would be desirable for the efficient water harvesting under the given condition. Here we compare the

Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|190 citations·2014
Solar thermophotovoltaic energy conversion systems with two-dimensional tantalum photonic crystal absorbers and emitters
Youngsuk Nam, Yi Xiang Yeng, Andrej Lenert, Peter Bermel, Ivan Čelanović, Marin Soljačić, Evelyn N. Wang
SJR Q1Solar Energy Materials and Solar Cells
Civil and Structural EngineeringEngineering
3
Article|188 citations·2013
Energy and hydrodynamic analyses of coalescence-induced jumping droplets
Youngsuk Nam, Hyun‐Sik Kim, Seungwon Shin
SJR Q1Applied Physics Letters

We report our dynamic analysis of coalescence-induced jumping on superhydrophobic surfaces with a full 3D numerical model supported with experiments. The analysis shows that approximately half (40%–60%) of the released surface energy during the coalescence is converted to kinetic energy before the detachment starts. The rapid increase in the kinetic energy at the beginning is initiated from low pressure associated with the high negative curvature of a liquid bridge. The asymmetric nature of the

Surfaces, Coatings and FilmsMaterials Science
4
Article|175 citations·2010
Fabrication and Characterization of the Capillary Performance of Superhydrophilic Cu Micropost Arrays
Youngsuk Nam, Stephen Sharratt, Chan Byon, Sung Jin Kim, Y. Sungtaek Ju
SJR Q2Journal of Microelectromechanical Systems

We report the fabrication of dense arrays of super-hydrophilic Cu microposts at solid fractions as high as 58% and aspect ratios as high as four using electrochemical deposition and chemical oxidation techniques. Oxygen surface plasma treatments of photoresist molds and a precise control of the initial electrodeposition current are found to be critical in creating arrays of nearly defect-free Cu posts. The capillary performance of the micropost arrays is characterized using capillary rate of ris

Computational MechanicsEngineering
5
Article|152 citations·2012
A comparative study of the morphology and wetting characteristics of micro/nanostructured Cu surfaces for phase change heat transfer applications
Youngsuk Nam, Y. Sungtaek Ju
SJR Q2Journal of Adhesion Science and Technology

A comparative study of oxidation methods to create Cu surfaces with controlled wettability is reported. Micro/nanostructures of Cu oxides are formed on Cu substrates using different chemical and thermal oxidation methods. The morphology and wetting characteristics of the resulting surfaces are characterized using atomic force microscopy, scanning electron microscopy, X-ray diffraction, and contact angle measurements. Chemical oxidation in alkali solutions can form uniform copper oxide layers wit

Materials ChemistryMaterials Science
6
Article|134 citations·2009
Experimental and Numerical Study of Single Bubble Dynamics on a Hydrophobic Surface
Youngsuk Nam, Jinfeng Wu, Gopinath R. Warrier, Y. Sungtaek Ju
Journal of Heat Transfer

The growth and departure of single bubbles on two smooth surfaces with very different wettabilities are studied using high-speed video microscopy and numerical simulations. Isolated artificial cavities of approximately 10 μm diameter are microfabricated on both a bare and a Teflon-coated silicon substrate to serve as nucleation sites. The bubble departure diameter is observed to be almost 3 times larger and the growth period almost 60 times longer for the hydrophobic surface than for the hydroph

Mechanical EngineeringEngineering
7
Article|130 citations·2015
Two types of Cassie-to-Wenzel wetting transitions on superhydrophobic surfaces during drop impact
Choongyeop Lee, Youngsuk Nam, Henri Lastakowski, Janet I. Hur, Seungwon Shin, Anne‐Laure Biance, Christophe Pirat, Chang‐Jin Kim, Christophe Ybert
SJR Q2Soft Matter

Despite the fact that superhydrophobic surfaces possess useful and unique properties, their practical application has remained limited by durability issues. Among those, the wetting transition, whereby a surface gets impregnated by the liquid and permanently loses its superhydrophobicity, certainly constitutes the most limiting aspect under many realistic conditions. In this study, we revisit this so-called Cassie-to-Wenzel transition (CWT) under the broadly encountered situation of liquid drop

Surfaces, Coatings and FilmsMaterials Science
8
Article|128 citations·2010
Single bubble dynamics on a superhydrophilic surface with artificial nucleation sites
Youngsuk Nam, Eduardo Aktinol, Vijay K. Dhir, Y. Sungtaek Ju
SJR Q1International Journal of Heat and Mass Transfer
Electrical and Electronic EngineeringEngineering
9
Article|115 citations·2011
Characterization and Modeling of the Heat Transfer Performance of Nanostructured Cu Micropost Wicks
Youngsuk Nam, Stephen Sharratt, Gilhwan Cha, Y. Sungtaek Ju
Journal of Heat Transfer

Micro heat pipes incorporating advanced wicks are promising for the thermal management of power electronics. We report the heat transfer performance of superhydrophilic Cu micropost wicks fabricated on thin silicon substrates using electrochemical deposition and controlled chemical oxidation. For a fixed post diameter, the interpost spacing and hence solid fraction is found to be a main design factor affecting the effective heat transfer coefficient and critical heat flux. The effective heat tra

Mechanical EngineeringEngineering
10
Article|103 citations·2014
Drop Impact Dynamics on Oil-Infused Nanostructured Surfaces
Choongyeop Lee, Hyun‐Sik Kim, Youngsuk Nam
SJR Q1Langmuir

We experimentally investigated the impact dynamics of a water drop on oil-infused nanostructured surfaces using high-speed microscopy and scalable metal oxide nano surfaces. The effects of physical properties of the oil and impact velocity on complex fluid dynamics during drop impact were investigated. We show that the oil viscosity does not have significant effects on the maximal spreading radius of the water drop, while it moderately affects the retraction dynamics. The oil viscosity also dete

Surfaces, Coatings and FilmsMaterials Science
11
Article|79 citations·2008
Bubble nucleation on hydrophobic islands provides evidence to anomalously high contact angles of nanobubbles
Youngsuk Nam, Y. Sungtaek Ju
SJR Q1Applied Physics Letters

We observe stable steady-periodic vapor bubble nucleation on islands of nanoscopically smooth hydrophobic materials microfabricated on a silicon substrate. The minimum surface superheat required for the onset of bubble nucleation is very low (∼9 °C), which cannot be explained by the established models of heterogeneous bubble nucleation. A modified bubble nucleation model indicates that the observed minimum superheat can be explained when one assumes the existence of a nanoscale interfacial gas p

Water Science and TechnologyEnvironmental Science
12
Article|71 citations·2022
A Scalable Haze‐Free Antireflective Hierarchical Surface with Self‐Cleaning Capability
Seungtae Oh, Jin‐Woo Cho, Jihun Lee, Jeonghoon Han, Sun‐Kyung Kim, Youngsuk Nam
SJR Q1Advanced ScienceOA

The lotus effect indicates that a superhydrophobic, self-cleaning surface can be obtained by roughening the topography of a hydrophobic surface. However, attaining high transmittance and clarity through a roughened surface remains challenging because of its strong scattering characteristics. Here, a haze-free, antireflective superhydrophobic surface that consists of hierarchically designed nanoparticles is demonstrated. Close-packed, deep-subwavelength-scale colloidal silica nanoparticles and th

Surfaces, Coatings and FilmsMaterials Science
13
Article|71 citations·2021
Gallium-based liquid metal alloy incorporating oxide-free copper nanoparticle clusters for high-performance thermal interface materials
Seokkan Ki, Jaehwan Shim, Seungtae Oh, Eunjoo Koh, Donghyun Seo, Seunggeol Ryu, Jaechoon Kim, Youngsuk Nam
SJR Q1International Journal of Heat and Mass Transfer
Materials ChemistryMaterials Science
14
Article|60 citations·2014
Droplet coalescence on water repellant surfaces
Youngsuk Nam, Donghyun Seo, Choongyeop Lee, Seungwon Shin
SJR Q2Soft Matter

We report our hydrodynamic and energy analyses of droplet coalescence on water repellent surfaces including hydrophobic, superhydrophobic and oil-infused superhydrophobic surfaces. The receding contact angle has significant effects on the contact line dynamics since the contact line dissipation was more significant during the receding mode than advancing. The contact line dynamics is modeled by the damped harmonic oscillation equation, which shows that the damping ratio and angular frequency of

Surfaces, Coatings and FilmsMaterials Science
15
Article|59 citations·2017
Enhanced heat transfer using metal foam liquid supply layers for micro heat spreaders
Seunggeol Ryu, Jeonghoon Han, Jichul Kim, Choongyeop Lee, Youngsuk Nam
SJR Q1International Journal of Heat and Mass Transfer
Mechanical EngineeringEngineering

Research Areas

Mechanical EngineeringSurfaces, Coatings and FilmsCivil and Structural EngineeringComputational MechanicsBiomedical EngineeringRenewable Energy, Sustainability and the Environment

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