Skip to main content

Ji-Hoon Seo

Korea University · Materials Science

About the Lab

Professor Ji-Hoon Seo's research lab specializes in advanced functional materials for energy and biomedical applications, with a focus on molecularly engineered polymers, nanomaterials, and dynamic surfaces. Key research directions include the development of high-performance transparent conducting electrodes for flexible optoelectronics, stimuli-responsive materials for cell-surface interaction control, and mechanically interlocked polymer-based solid electrolytes for next-generation batteries. The lab also explores white organic light-emitting diodes and hybrid tandem solar cells, emphasizing molecular design for enhanced device efficiency and stability.

molecular machinessolid polymer electrolytestransparent conducting electrodesstimuli-responsive materialsorganic optoelectronics

Research Overview

Papers
123
Total Citations
2,587
Papers (5y)
44
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
44total
2022
2023
2024
2025
2026
Citations per year (5y)
299total
20222023202420252026

Selected Papers

15
1
Article|121 citations·2008
Surface tethering of phosphorylcholine groups onto poly(dimethylsiloxane) through swelling–deswelling methods with phospholipids moiety containing ABA-type block copolymers
Ji‐Hun Seo, Ryosuke Matsuno, Tomohiro Konno, Madoka Takai, Kazuhíko Ishihara
SJR Q1Biomaterials
Surfaces, Coatings and FilmsMaterials Science
2
Article|117 citations·2013
Inducing Rapid Cellular Response on RGD-Binding Threaded Macromolecular Surfaces
Ji‐Hun Seo, Sachiro Kakinoki, Yuuki Inoue, Tetsuji Yamaoka, Kazuhíko Ishihara, Nobuhiko Yui
SJR Q1Journal of the American Chemical Society

The rapid response of integrin β1 molecules to an RGD peptide on a dynamic polyrotaxane surface was successfully induced. As a result, RGD peptides introduced on a highly dynamic cyclodextrin molecule enhanced the frequency of contact with specific integrin molecules on the cell membrane at the early stage of material-cell interactions.

Cell BiologyBiochemistry, Genetics and Molecular Biology
3
Article|99 citations·2018
Development of a supramolecular accelerator simultaneously to increase the cross-linking density and ductility of an epoxy resin
Jiae Seo, Jiae Seo, Nobuhiko Yui, Ji‐Hun Seo, Ji‐Hun Seo
SJR Q1Chemical Engineering Journal
Mechanical EngineeringEngineering
4
Article|83 citations·2016
Development of anti-biofouling interface on hydroxyapatite surface by coating zwitterionic MPC polymer containing calcium-binding moieties to prevent oral bacterial adhesion
Sunah Kang, Myoungjin Lee, Minji Kang, Minwoo Noh, Joohee Jeon, Yan Lee, Ji‐Hun Seo
SJR Q1Acta Biomaterialia
PeriodonticsDentistry
5
Article|76 citations·2012
Adsorption state of fibronectin on poly(dimethylsiloxane) surfaces with varied stiffness can dominate adhesion density of fibroblasts
Ji‐Hun Seo, Keiko Sakai, Nobuhiko Yui
SJR Q1Acta Biomaterialia
Cell BiologyBiochemistry, Genetics and Molecular Biology
6
Article|69 citations·2021
Mechanically Interlocked Polymer Electrolyte with Built‐In Fast Molecular Shuttles for All‐Solid‐State Lithium Batteries
Jiae Seo, Jiae Seo, Gwang‐Hee Lee, Joon Hur, Myeong‐Chang Sung, Ji‐Hun Seo, Ji‐Hun Seo, Dong‐Wan Kim
SJR Q1Advanced Energy Materials

Abstract The mobility of molecular shuttles inside a mechanically interlocked polymer (MIP) can improve the ionic conductivity and electron transport capacity of a solid polymer electrolyte (SPE) and maintain a mechanically tough structure. The polyrotaxane‐based MIP electrolyte with a necklace‐like molecular structure exhibits high ionic conductivity (σ = 5.93 × 10 −3 S cm −1 at 25 °C and 1.44 × 10 −2 S cm −1 at 60 °C), a high Li + ion transference number ( t + = 0.71), and high electrochemical

Electrical and Electronic EngineeringEngineering
7
Article|69 citations·2009
Cell adhesion on phase-separated surface of block copolymer composed of poly(2-methacryloyloxyethyl phosphorylcholine) and poly(dimethylsiloxane)
Ji‐Hun Seo, Ryosuke Matsuno, Madoka Takai, Kazuhíko Ishihara
SJR Q1Biomaterials
Surfaces, Coatings and FilmsMaterials Science
8
Article|57 citations·2013
The significance of hydrated surface molecular mobility in the control of the morphology of adhering fibroblasts
Ji‐Hun Seo, Sachiro Kakinoki, Yuuki Inoue, Kwangwoo Nam, Tetsuji Yamaoka, Kazuhíko Ishihara, Akio Kishida, Nobuhiko Yui
SJR Q1Biomaterials
Surfaces, Coatings and FilmsMaterials Science
9
Article|55 citations·2012
The effect of molecular mobility of supramolecular polymer surfaces on fibroblast adhesion
Ji‐Hun Seo, Nobuhiko Yui
SJR Q1Biomaterials
Surfaces, Coatings and FilmsMaterials Science
10
Article|54 citations·2014
Directing Stem Cell Differentiation by Changing the Molecular Mobility of Supramolecular Surfaces
Ji‐Hun Seo, Sachiro Kakinoki, Tetsuji Yamaoka, Nobuhiko Yui
SJR Q1Advanced Healthcare Materials

Polymer surfaces with a wide range of hydrated surface mobility are developed by a simple deposition method with supramolecular block copolymers. The morphologies of adhering stem cells are greatly dependent on the surface mobility of polymers, and this induces significant changes in the cytoskeletal signaling pathway to direct the downstream stem cell differentiation.

Surfaces, Coatings and FilmsMaterials Science
11
Article|48 citations·2010
Tissue response to poly(l-lactic acid)-based blend with phospholipid polymer for biodegradable cardiovascular stents
Hyung‐Il Kim, Kazuhíko Ishihara, Seungbok Lee, Ji‐Hun Seo, Ji‐Hun Seo, Hye Young Kim, Dongwhan Suh, Min Uk Kim, Tomohiro Konno, Madoka Takai, Jeong‐Sun Seo, Jeong‐Sun Seo
SJR Q1Biomaterials
Surfaces, Coatings and FilmsMaterials Science
12
Article|40 citations·2023
Inducing an Amorphous Phase in Polymer Plastic Crystal Electrolyte for Effective Ion Transportation in Lithium Metal Batteries
Bitgaram Kim, Su Hyun Yang, Ji‐Hun Seo, Yun Chan Kang
SJR Q1Advanced Functional Materials

Abstract Polymer plastic crystal electrolytes (PPCEs) have garnered significant attention for addressing the challenges associated with succinonitrile (SN), including its inadequate mechanical properties and side reactions with electrodes. However, a comprehensive investigation of the influence of the molecular structure of the polymer network on the states of SN within the network and its subsequent impact on ionic conductivities remains largely unexplored. To shed light on this critical aspect

Electrical and Electronic EngineeringEngineering
13
Article|35 citations·2019
Foldable and Extremely Scratch-Resistant Hard Coating Materials from Molecular Necklace-like Cross-Linkers
Jiae Seo, Jiae Seo, Sung Moon, Heemin Kang, Byoung‐Ho Choi, Ji‐Hun Seo, Ji‐Hun Seo
SJR Q1ACS Applied Materials & Interfaces

A flexible hard coating material displaying extreme scratch resistance and foldable flexibility was developed via the design of an organic-inorganic hybrid coating material employing an alkoxysilyl-functionalized polyrotaxane cross-linker (PRX_Si1). PRX_Si1 has a molecular necklace-like structure that can form organic-inorganic cross-linking points and provide large molecular movements. It was postulated that the scratch resistance and flexibility could be simultaneously increased because of the

Materials ChemistryMaterials Science
14
Article|29 citations·2021
All-organic piezoelectric elastomer formed through the optimal cross-linking of semi-crystalline polyrotaxanes
Jiae Seo, Jiae Seo, Joon Hur, Minseok Kim, Tae‐Gon Lee, So Jung Seo, Seung Ho Han, Ji‐Hun Seo, Ji‐Hun Seo
SJR Q1Chemical Engineering Journal
Biomedical EngineeringEngineering
15
Article|29 citations·2017
Fabrication of an Anti-Biofouling Plasma-Filtration Membrane by an Electrospinning Process Using Photo-Cross-linkable Zwitterionic Phospholipid Polymers
Jiae Seo, Ji‐Hun Seo, Ji‐Hun Seo, Ji‐Hun Seo
SJR Q1ACS Applied Materials & Interfaces

The goal of this study is to fabricate a stable plasma filtration membrane with antibiofouling properties via an electrospinning process. To this end, a random-type copolymer consisting of zwitterionic phosphorylcholine (PC) groups and ultraviolet (UV)-cross-linkable phenyl azide groups was synthesized. The zwitterionic PC group provides antibiofouling properties, and the phenyl azide group enables the stable maintenance of the fibrous nanostructure of hydrophilic zwitterion polymers in aqueous

Surfaces, Coatings and FilmsMaterials Science

Research Areas

Surfaces, Coatings and FilmsPolymers and PlasticsElectrical and Electronic EngineeringMolecular BiologyMaterials ChemistryBiomedical Engineering

Dive deeper into Ji-Hoon Seo's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.