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Hyoungsoo Kim

Korea Advanced Institute of Science and Technology · 工学

研究室紹介

Professor Hyoungsoo Kim's research lab specializes in interfacial phenomena and microfluidics, focusing on the dynamics of droplet evaporation, Marangoni flows, and surface-mediated assembly processes. The lab investigates how surfactants, polymers, and interfacial forces govern the formation of uniform coatings, patterned deposits, and functional nanofilms. Using advanced experimental techniques such as PIV, Tomo-PIV, and particle tracking, combined with theoretical modeling, the lab explores the fundamental mechanisms behind flow control and self-assembly at liquid interfaces. Their work bridges soft matter physics, materials science, and microfluidic engineering to enable applications in sensing, separation, and portable fluidic devices.

Marangoni flowsdroplet dynamicsinterfacial assemblymicrofluidicsnanofilm fabrication

Research Overview

Papers
186
Total Citations
2,999
Papers (5y)
53
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
53total
2022
2023
2024
2025
2026
Citations per year (5y)
393total
20222023202420252026

Selected Papers

15
1
Article|325 citations·2016
Controlled Uniform Coating from the Interplay of Marangoni Flows and Surface-Adsorbed Macromolecules
Hyoungsoo Kim, François Boulogne, Eujin Um, Ian Jacobi, Ernie Button, Howard A. Stone
SJR Q1Physical Review LettersOA

Surface coatings and patterning technologies are essential for various physicochemical applications. In this Letter, we describe key parameters to achieve uniform particle coatings from binary solutions. First, multiple sequential Marangoni flows, set by solute and surfactant simultaneously, prevent nonuniform particle distributions and continuously mix suspended materials during droplet evaporation. Second, we show the importance of particle-surface interactions that can be established by surfa

Electrical and Electronic EngineeringEngineering
2
Article|130 citations·2017
Solutal Marangoni flows of miscible liquids drive transport without surface contamination
Hyoungsoo Kim, Koen Muller, Orest Shardt, Shahriar Afkhami, Howard A. Stone
SJR Q1Nature PhysicsOA
Computational MechanicsEngineering
3
Article|68 citations·2002
A Study on Epistemology of Korean Elder‘s Suicidal Thought
Hyoungsoo Kim
Journal of the Korea Gerontological Society
Public Health, Environmental and Occupational HealthMedicine
4
Article|63 citations·2018
Direct measurement of selective evaporation of binary mixture droplets by dissolving materials
Hyoungsoo Kim, Howard A. Stone
SJR Q1Journal of Fluid Mechanics

We investigate experimentally and theoretically how a droplet of a binary mixture evaporates when placed on a solid substrate. Our focus is the limit at which the two liquid components have different vapour pressures. Using physicochemical effects, we directly visualize the selective evaporation of the more volatile component and so document the space and time dependence of the chemical distribution in the droplet. In particular, we observe that a mixture consisting of an organic solvent and dei

Electrical and Electronic EngineeringEngineering
5
Article|51 citations·2023
Autonomous Interfacial Assembly of Polymer Nanofilms via Surfactant-Regulated Marangoni Instability
Sung‐Joon Park, Myung-Seok Lee, Mehmet Emin Kılıç, Junil Ryu, Hosik Park, You In Park, Hyoungsoo Kim, Kwang‐Ryeol Lee, Jung‐Hyun Lee
SJR Q1Nano Letters

Interfacial polymerization (IP) provides a versatile platform for fabricating defect-free functional nanofilms for various applications, including molecular separation, energy, electronics, and biomedical materials. Unfortunately, coupled with complex natural instability phenomena, the IP mechanism and key parameters underlying the structural evolution of nanofilms, especially in the presence of surfactants as an interface regulator, remain puzzling. Here, we interfacially assembled polymer nano

Surfaces, Coatings and FilmsMaterials Science
6
Article|43 citations·2012
Comparison of Tomo-PIV and 3D-PTV for microfluidic flows
Hyoungsoo Kim, Jerry Westerweel, Gerrit E. Elsinga
SJR Q2Measurement Science and Technology

Two 3D-3C velocimetry techniques for micro-scale measurements are compared: tomographic particle image velocimetry (Tomo-PIV) and 3D particle-tracking velocimetry (3D-PTV). Both methods are applied to experimental data from a confined shear-driven liquid droplet over a moving surface. The droplet has 200 μm height and 2 mm diameter. Micro 3D-PTV and Tomo-PIV are used to obtain the tracer particle distribution and the flow velocity field for the same set of images. It is shown that the reconstruc

Biomedical EngineeringEngineering
7
Article|42 citations·2019
Control of solutal Marangoni-driven vortical flows and enhancement of mixing efficiency
Jong-Hyeok Park, Junil Ryu, Hyung Jin Sung, Hyoungsoo Kim
SJR Q1Journal of Colloid and Interface ScienceOA

We show that in addition to the surface tension of the volatile liquid, the vapor concentration also influenced the local surface tension along the interface, which in turn changed the internal flow velocity. To predict the flow velocity and oscillatory frequency of the solutal Marangoni flow, we developed a theoretical model based on scaling analysis that showed a good agreement with the experimental results. We believe that the current study will motivate low-cost and portable sample flow cont

Biomedical EngineeringEngineering
8
Article|41 citations·2015
Spontaneous Marangoni Mixing of Miscible Liquids at a Liquid–Liquid–Air Contact Line
Hyoungsoo Kim, Jeongsu Lee, Tae‐Hong Kim, Ho‐Young Kim
SJR Q1Langmuir

We investigate the flow patterns created when a liquid drop contacts a reservoir liquid, which has implications on various physicochemical and biochemical reactions including mixing in microfluidic systems. The localized vortical flow spontaneously triggered by the difference of surface tension between the two liquids is studied, which is thus termed the Marangoni vortex. To quantitatively investigate the strength of vortices, we performed particle image velocimetry (PIV) experiments by varying

Biomedical EngineeringEngineering
9
Article|40 citations·2022
Self‐Induced Solutal Marangoni Flows Realize Coffee‐Ring‐Less Quantum Dot Microarrays with Extensive Geometric Tunability and Scalability
Jeongsu Pyeon, Kyeong Min Song, Yeon Sik Jung, Hyoungsoo Kim
SJR Q1Advanced ScienceOA

Currently, quantum dot light-emitting diodes (QD-LEDs) are receiving extensive attention. To maximize their luminous performance, the uniformity of the QD-LEDs is crucial. Although the spontaneously self-induced solutal Marangoni flow of an evaporating binary mixture droplet has been widely investigated and used to suppress coffee-ring patterns in ink-jet printing technology, unfortunately, ring shapes are still present at the edges, and the Marangoni flow generated by the selective evaporation

Electrical and Electronic EngineeringEngineering
10
Article|40 citations·2019
Multimodal breakup of a double emulsion droplet under an electric field
Muhammad Salman Abbasi, Ryungeun Song, Hyoungsoo Kim, Jinkee Lee
SJR Q2Soft Matter

We investigate the hydrodynamic deformation and breakup of double emulsion droplets under a uniform DC electric field. Based on comprehensive experiments, we observe four different breakup modes for the double emulsion droplet by varying the viscosity of shell liquid, and conductivity, permittivity or volume fraction of the core liquid. The breakup modes are classified as a unidirectional breakup mode, two different bidirectional breakup modes, and a tip-streaming breakup mode. We performed scal

Electrical and Electronic EngineeringEngineering
11
Article|39 citations·2011
Full 3D-3C velocity measurement inside a liquid immersion droplet
Hyoungsoo Kim, S. Große, Gerrit E. Elsinga, Jerry Westerweel
SJR Q1Experiments in FluidsOA

We describe a tomographic PIV system for the measurement of the internal flow in a droplet over a stagnant and a moving surface. The flow condition is representative of the flow in an immersion droplet applied in a liquid immersion lithography machine. We quantify the accuracy and reliability of the measurements and compare the shape of the reconstructed measurement volume to shape measurements by means of shadowgraphy. First results indicate the internal flow pattern near the receding contact l

Biomedical EngineeringEngineering
12
Article|37 citations·2023
Plasmonic metasurfaces of cellulose nanocrystal matrices with quadrants of aligned gold nanorods for photothermal anti-icing
Jeongsu Pyeon, Soon Mo Park, J. Kim, Jeong-Hwan Kim, Yong‐Jin Yoon, Dong Ki Yoon, Hyoungsoo Kim
SJR Q1Nature CommunicationsOA

Cellulose nanocrystals (CNCs) are intriguing as a matrix for plasmonic metasurfaces made of gold nanorods (GNRs) because of their distinctive properties, including renewability, biodegradability, non-toxicity, and low cost. Nevertheless, it is very difficult to precisely regulate the positioning and orientation of CNCs on the substrate in a consistent pattern. In this study, CNCs and GNRs, which exhibit tunable optical and anti-icing capabilities, are employed to manufacture a uniform plasmonic

Surfaces, Coatings and FilmsMaterials Science
13
Article|28 citations·1997
Stability and Solvent Accessibility of SecA Protein of Escherichia coli
Minho Song, Hyoungsoo Kim
SJR Q2The Journal of Biochemistry

It has been shown that many proteins, when converted into partially unfolded structures, interact strongly with a lipid bilayer. SecA protein of Escherichia coli is an unusual water-soluble protein which, in the native form, can readily penetrate the membrane and lipid bilayer. In order to see whether the native SecA exhibits partially unfolded characteristics, the stability and solvent accessibility of SecA were studied using various spectroscopic and hydrogen-exchange methods. The results are

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Review|28 citations·2023
Liquid Metal Micro- and Nanodroplets: Characteristics, Fabrication Techniques, and Applications
Gaabhin Ryu, Inkyu Park, Hyoungsoo Kim
SJR Q1ACS OmegaOA

High Resolution Image Download MS PowerPoint Slide Gallium-based liquid metal micro- and nanodroplets are being extensively explored in innumerable emerging technologies. Although many of these systems involve the interfaces of liquid metal with a continuous phase liquid ( e.g., microfluidic channels and emulsions), the static or dynamic phenomena at the interface have been scarcely discussed. In this study, we begin by introducing the interfacial phenomena and characteristics observed at the in

Electrical and Electronic EngineeringEngineering
15
Article|23 citations·2021
Evaporation and deposition of inclined colloidal droplets
Jin Young Kim, Marta Gonçalves, Narina Jung, Hyoungsoo Kim, Byung Mook Weon
SJR Q1Scientific ReportsOA

Colloidal droplets on flat solid substrates commonly leave symmetric ring-like deposits due to coffee-ring flows during evaporation. On inclined substrates, droplet shapes may become asymmetric by gravity. On this basis, it is not clear how their evaporation dynamics and final deposits are changed depending on inclination. Here we explore evaporation and deposition dynamics of colloidal droplets on inclined substrates, mainly by controlling colloidal particle size, substrate inclination, and rel

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringComputational MechanicsBiomedical EngineeringAutomotive EngineeringMechanical EngineeringMaterials Chemistry

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