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Jin Woong Kim

Sungkyunkwan University · Materials Science

About the Lab

Professor Jin Woong Kim's research lab specializes in advanced functional materials and soft nanomaterials, with a focus on smart nanofluids, stimuli-responsive colloidal systems, and flexible electronic devices. The lab develops innovative materials such as associative silica nanoparticles, Pickering emulsions, and conductive nanocomposites for applications in enhanced oil recovery, wearable electronics, and biomedicine. Key research directions include the design of stimuli-responsive interfaces, scalable fabrication of microfluidic systems, and the integration of nanomaterials into practical devices with high performance and reliability. The lab emphasizes interdisciplinary approaches combining materials chemistry, colloid science, and microfluidics to address real-world challenges in energy, health, and sustainability.

smart nanofluidsPickering emulsionsflexible electronicscolloidal catalystsmicrofluidic encapsulation

Research Overview

Papers
154
Total Citations
3,673
Papers (5y)
19
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
19total
2021
2022
2023
2024
2025
Citations per year (5y)
68total
20212022202320242025

Selected Papers

15
1
Article|122 citations·2018
E‐Skin Tactile Sensor Matrix Pixelated by Position‐Registered Conductive Microparticles Creating Pressure‐Sensitive Selectors
Insang You, Song‐Ee Choi, Hyejin Hwang, Sang Woo Han, Jin Woong Kim, Unyong Jeong
SJR Q1Advanced Functional Materials

Abstract Electronic skin (E‐skin) imitates human skin by converting external stimuli into electrical signals. E‐skin requires high flexibility and a high level of device integration. Unlike conventional E‐skin creation methods, a highly sensitive pressure sensor matrix (100 pixels cm −2 ) made of position‐registered elastic conductive microparticles (MPs) is created. The MPs form a Schottky junction with the bottom electrode and the current through the junction is sensitive to external pressure,

Biomedical EngineeringEngineering
2
Article|115 citations·2017
Nanofluid Enhanced Oil Recovery Using Hydrophobically Associative Zwitterionic Polymer-Coated Silica Nanoparticles
Sang Koo Choi, Han Am Son, Hyun Tae Kim, Jin Woong Kim
SJR Q1Energy & Fuels

Intense interest has been shown in the development of “smart nanofluids” because they can dramatically change their flow properties in complex fluid systems. We introduce a robust and straightforward approach to develop a smart nanofluid system, in which associative silica nanoparticles (ASNPs) were incorporated to regulate their flow properties in rock pores. ASNPs were synthesized by covalently coating a hydrophobically associative hygroscopic zwitterionic poly[2-methacryloyloxyethyl phosphory

Ocean EngineeringEngineering
3
Article|115 citations·2012
A Microfluidic Approach to Encapsulate Living Cells in Uniform Alginate Hydrogel Microparticles
Carlos J. Martinez, Jin Woong Kim, Congwang Ye, Idelise Ortiz, Amy C. Rowat, Manuel Márquez, David A. Weitz
SJR Q1Macromolecular Bioscience

A microfluidic technique is described to encapsulate living cells in alginate hydrogel microparticles generated from monodisperse double-emulsion templates. A microcapillary device is used to fabricate double emulsion templates composed of an alginate drop surrounded by a mineral oil shell. Hydrogel formation begins when the alginate drop separates from the mineral oil shell and comes into contact with Ca(2+) ions in the continuous phase. Alginate hydrogel microparticles with diameters ranging f

Biomedical EngineeringEngineering
4
Article|96 citations·2019
Highly Stretchable and Wearable Thermotherapy Pad with Micropatterned Thermochromic Display Based on Ag Nanowire–Single‐Walled Carbon Nanotube Composite
Hyunmin Kim, Minjeong Seo, Jong‐Woo Kim, Jong‐Woo Kim, Do‐Kyun Kwon, Song‐Ee Choi, Jin Woong Kim, Jin Woong Kim, Jae‐Min Myoung
SJR Q1Advanced Functional Materials

Abstract Due to the increasing interest in wearable devices, flexible and stretchable film heaters have been widely studied, as alternatives to heaters with conventional rigid shapes. Herein, a highly stretchable film heater (SFH) based on the silver nanowire (Ag NW)–single‐walled carbon nanotube composite with a thermochromic display on a polydimethylsiloxane (PDMS) substrate is successfully fabricated. The SFH shows excellent electrical conductivity, high mechanical stretchability, and outstan

Biomedical EngineeringEngineering
5
Article|93 citations·2016
Core Flooding of Complex Nanoscale Colloidal Dispersions for Enhanced Oil Recovery by in Situ Formation of Stable Oil-in-Water Pickering Emulsions
Ki Youl Yoon, Han Am Son, Sang Koo Choi, Jin Woong Kim, Won Mo Sung, Hyun Tae Kim
SJR Q1Energy & Fuels

This study reports a Pickering emulsion flooding system, in which the oil–water interface is structurally stabilized by a complex colloidal layer consisting of silica nanoparticles, dodecyltrimethylammonium bromide (DTAB), and poly(4-styrenesulfonic acid- co -maleic acid) sodium salt (PSS- co -MA). The colloidal layer was generated by adsorption of PSS- co -MA on the silica nanoparticles as a result of the van der Waals attraction and by adsorption of DTAB onto the PSS- co -MA layer as a result

Materials ChemistryMaterials Science
6
Article|64 citations·2018
Janus colloid surfactant catalysts for in situ organic reactions in Pickering emulsion microreactors
Jangwoo Cho, Jaehong Cho, Hyeri Kim, Minkyung Lim, Hanbyeol Jo, Hancheul Kim, Sun‐Joon Min, Hakjune Rhee, Jin Woong Kim
SJR Q1Green Chemistry

Colloid surfactant catalysts are synthesized for the production of Pickering emulsion microreactors that exhibit outstanding catalytic activity and magnetic-responsive recovery performance.

Materials ChemistryMaterials Science
7
Article|60 citations·2016
Synthesis of Monodisperse Bi‐Compartmentalized Amphiphilic Janus Microparticles for Tailored Assembly at the Oil–Water Interface
Jeong Won Kim, Jeong Won Kim, Jangwoo Cho, Jaehong Cho, Bum Jun Park, Yong‐Jin Kim, Kyungho Choi, Jin Woong Kim, Jin Woong Kim
SJR Q1Angewandte Chemie International Edition

Janus particles endowed with controlled anisotropies represent promising building blocks and assembly materials because of their asymmetric functionalities. Herein, we show that using the seeded monomer swelling and polymerization technique allows us to obtain bi-compartmentalized Janus microparticles that are generated depending on the phase miscibility of the poly (alkyl acrylate) chains against the polystyrene seed, thus minimizing the interfacial free energy. When tetradecyl acrylate is used

Materials ChemistryMaterials Science
8
Article|48 citations·2013
Stabilization of pickering emulsions by generating complex colloidal layers at liquid–liquid interfaces
Geun Ju Lee, Han Am Son, Jang Woo Cho, Sang Koo Choi, Hyun Tae Kim, Jin Woong Kim
SJR Q1Journal of Colloid and Interface Science
Materials ChemistryMaterials Science
9
Article|47 citations·2018
Cell-Penetrating Peptide-Patchy Deformable Polymeric Nanovehicles with Enhanced Cellular Uptake and Transdermal Delivery
Dae-Hwan Park, Jin Yong Lee, Heui Kyoung Cho, Woo Jin Hong, Jisun Kim, Jisun Kim, Hyemyung Seo, Ikjang Choi, Youngbok Lee, Juhyeon Kim, Juhyeon Kim, Sun‐Joon Min
SJR Q1Biomacromolecules

We herein propose a polymeric nanovehicle system that has the ability to remarkably improve cellular uptake and transdermal delivery. Cell-penetrating peptide-patchy deformable polymeric nanovehicles were fabricated by tailored coassembly of amphiphilic poly(ethylene oxide)- block-poly(ε-caprolactone) (PEO- b-PCL), mannosylerythritol lipid (MEL), and YGRKKRRQRRR-cysteamine (TAT)-linked MEL. Using X-ray diffraction, differential scanning calorimetry, and nuclear magnetic resonance analyses, we re

Pharmaceutical SciencePharmacology, Toxicology and Pharmaceutics
10
Article|46 citations·2018
Nanoemulsion Vehicles as Carriers for Follicular Delivery of Luteolin
Kyoung-Hee Shin, Hayoung Choi, Sun Kwang Song, Ji Won Yu, Jin Yong Lee, Eun‐Ji Choi, Dong Hee Lee, Sun Hee, Jin Woong Kim
SJR Q1ACS Biomaterials Science & Engineering

Luteolin (3',4',5,7-tetrahydroxyflavone), a type of flavonoid found in medicinal herbs and vegetables, has been of great interest due to its antioxidative, anti-inflammatory, and anticarcinogenic effects. Despite these beneficial biological properties, the ease with which luteolin forms molecular crystals in conventional aqueous formulations has hampered much wider applications. In this study, we introduce an oil-in-water (O/W) nanoemulsion vehicle system for enhanced follicular delivery of lute

UrologyMedicine
11
Article|45 citations·2017
Magnetic-Patchy Janus Colloid Surfactants for Reversible Recovery of Pickering Emulsions
Hyeri Kim, Jangwoo Cho, Jaehong Cho, Bum Jun Park, Jin Woong Kim
SJR Q1ACS Applied Materials & Interfaces

We present a straightforward and robust method for the synthesis of Janus colloid surfactants with distinct amphiphilicity and magnetic responsiveness. To this end, hydroxyl-functionalized amphiphilic Janus microparticles (JMPs) are synthesized by seeded monomer swelling and subsequent photopolymerization. By incorporating controlled amounts of hydroxyl groups on poly(styrene- co -vinyl alcohol) seed particles, we adjust the interfacial tension between the seed polymer and the poly(tetradecyl ac

Materials ChemistryMaterials Science
12
Article|43 citations·2017
Smart Cellulose Nanofluids Produced by Tunable Hydrophobic Association of Polymer-Grafted Cellulose Nanocrystals
Yea Ram Lee, Dae-Hwan Park, Sang Koo Choi, Mi‐Ju Kim, Heung Soo Baek, Jin Nam, Chan Bok Chung, Chinedum O. Osuji, Jin Woong Kim
SJR Q1ACS Applied Materials & Interfaces

Cellulose fibrils, unique plant-derived semicrystalline nanomaterials with exceptional mechanical properties, have significant potential for rheology modification of complex fluids due to their ability to form a physically associated semiflexible fibrillary network. Here, we report new associative cellulose nanocrystals (ACNCs) with stress-responsive rheological behaviors in an aqueous solution. The surface-mediated living radical polymerization was employed to graft poly(stearyl methacrylate-co

BiomaterialsMaterials Science
13
Article|39 citations·2018
Adjustable Intermolecular Interactions Allowing 2D Transition Metal Dichalcogenides with Prolonged Scavenging Activity for Reactive Oxygen Species
DaBin Yim, Jieun Kim, Ji Eun Kim, Hye‐In Kim, Jin‐Kyoung Yang, Tae‐Woog Kang, Jin Nam, Sang Hoon Han, Byeongsun Jun, Chi H. Lee, Sang Uck Lee, Jin Woong Kim
SJR Q1Small

Abstract There is an increasing demand for control over the dimensions and functions of transition metal dichalcogenides (TMDs) in aqueous solution toward biological and medical applications. Herein, an approach for the exfoliation and functionalization of TMDs in water via modulation of the hydrophobic interaction between poly(ε‐caprolactone)‐ b ‐poly(ethylene glycol) (PCL‐ b ‐PEG) and the basal planes of TMDs is reported. Decreasing the hydrophobic PCL length of PCL‐ b ‐PEG from 5000 g mol −1

Materials ChemistryMaterials Science
14
Article|38 citations·2012
Monodisperse conducting colloidal dipoles with symmetric dimer structure for enhancing electrorheology properties
Kyomin Shin, Daun Kim, Jun‐Cheol Cho, Hyung‐Seok Lim, Jin Woong Kim, Kyung‐Do Suh
SJR Q1Journal of Colloid and Interface Science
Civil and Structural EngineeringEngineering
15
Article|32 citations·2018
Colloidal Pixel‐Based Micropatterning Using Uniform Janus Microparticles with Tunable Anisotropic Particle Geometry
Sang Woo Han, Song‐Ee Choi, Douglas H. Chang, Duho Lee, Bo‐Hyun Kim, Hakyeong Yang, Minjeong Seo, Jin Woong Kim
SJR Q1Advanced Functional Materials

Abstract A new platform for designing 2D colloidal arrays by using Janus microparticles (JMPs) with tunable anisotropic particle geometry is introduced. The JMPs are synthesized by the photopolymerization of biphasic emulsion droplets produced by capillary‐based microfluidics while adjusting the spreading coefficient between −4.4 and −7.2 mN m −1 . The unidirectional rubbing of JMPs leads to their exact positioning in the stencil holes. The ratio of the hole diameter to the bigger bulb diameter

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryBiomedical EngineeringMedia TechnologySurfaces, Coatings and FilmsPharmaceutical ScienceMolecular Biology

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