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Hoon Eui Jeong

Ulsan National Institute of Science and Technology · Engineering

About the Lab

Professor Hoon Eui Jeong's research lab specializes in the design and fabrication of advanced functional materials with multiscale hierarchical structures, focusing on biomimetic adhesives, responsive photonic skins, and smart wearable devices. The lab develops innovative lithographic and molding techniques—such as capillary molding and plasma etching—to create high-aspect-ratio polymer nanostructures with tunable mechanical, adhesive, and optical properties. Key research directions include directional dry adhesion, shape-memory biopolymers, and stretchable, multifunctional skin-like sensors for healthcare and robotics applications.

hierarchical structuresdry adhesivesphotonic skinsbiopolymerstretchable electronics

Research Overview

Papers
226
Total Citations
7,430
Papers (5y)
67
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
67total
2022
2023
2024
2025
2026
Citations per year (5y)
836total
20222023202420252026

Selected Papers

15
1
Article|550 citations·2009
A nontransferring dry adhesive with hierarchical polymer nanohairs
Hoon Eui Jeong, Jin-Kwan Lee, Hong Nam Kim, Sang Heup Moon, Kahp Y. Suh
SJR Q1Proceedings of the National Academy of SciencesOA

We present a simple yet robust method for fabricating angled, hierarchically patterned high-aspect-ratio polymer nanohairs to generate directionally sensitive dry adhesives. The slanted polymeric nanostructures were molded from an etched polySi substrate containing slanted nanoholes. An angled etching technique was developed to fabricate slanted nanoholes with flat tips by inserting an etch-stop layer of silicon dioxide. This unique etching method was equipped with a Faraday cage system to contr

Mechanics of MaterialsEngineering
2
Article|260 citations·2013
25th Anniversary Article: Scalable Multiscale Patterned Structures Inspired by Nature: the Role of Hierarchy
Won‐Gyu Bae, Hong Nam Kim, Doogon Kim, Suk‐Hee Park, Hoon Eui Jeong, Kahp‐Yang Suh
SJR Q1Advanced Materials

Multiscale, hierarchically patterned surfaces, such as lotus leaves, butterfly wings, adhesion pads of gecko lizards are abundantly found in nature, where microstructures are usually used to strengthen the mechanical stability while nanostructures offer the main functionality, i.e., wettability, structural color, or dry adhesion. To emulate such hierarchical structures in nature, multiscale, multilevel patterning has been extensively utilized for the last few decades towards various applications

Surfaces, Coatings and FilmsMaterials Science
3
Review|221 citations·2018
Multifunctional Smart Skin Adhesive Patches for Advanced Health Care
Insol Hwang, Hong Nam Kim, Minho Seong, Sang‐Hyeon Lee, Minsu Kang, Hoon Yi, Won Bae, Moon Kyu Kwak, Hoon Eui Jeong
SJR Q1Advanced Healthcare Materials

A skin adhesive patch is the most fundamental and widely used medical device for diverse health-care purposes. Conventional skin adhesive patches have been mainly utilized for routine medical purposes such as wound management, fixation of medical devices, and simple drug release. In contrast to traditional skin adhesive patches, recently developed patches incorporate multiple key functions of bulky medical devices into a thin, flexible patch based on emerging nanomaterials and flexible electroni

Biomedical EngineeringEngineering
4
Article|191 citations·2009
Nanohairs and nanotubes: Efficient structural elements for gecko-inspired artificial dry adhesives
Hoon Eui Jeong, Kahp Y. Suh
SJR Q1Nano Today
Mechanics of MaterialsEngineering
5
Article|167 citations·2006
Nanoengineered Multiscale Hierarchical Structures with Tailored Wetting Properties
Hoon Eui Jeong, Sung Hoon Lee, Jae Kwan Kim, Kahp Y. Suh
SJR Q1Langmuir

A simple method for fabricating micro/nanoscale hierarchical structures is presented using a two-step temperature-directed capillary molding technique. This lithographic method involves a sequential application of the molding process in which a uniform polymer-coated surface is molded with a patterned mold by means of capillary force above the glass transition temperature of the polymer. Various microstructures and nanostructures were fabricated with minimum resolution down to approximately 50 n

Mechanics of MaterialsEngineering
6
Article|152 citations·2019
Ultra‐Adaptable and Wearable Photonic Skin Based on a Shape‐Memory, Responsive Cellulose Derivative
Hoon Yi, Sang‐Hyeon Lee, Hyunwook Ko, Dohoon Lee, Won‐Gyu Bae, Tae‐il Kim, Dong Soo Hwang, Hoon Eui Jeong
SJR Q1Advanced Functional Materials

Abstract Photonic skins enable a direct and intuitive visualization of various physical and mechanical stimuli with eye‐readable colorations by intimately laminating to target substrates. Their development is still at infancy compared to that of electronic skins. Here, an ultra‐adaptable, large‐area (10 × 10 cm 2 ), multipixel (14 × 14) photonic skin based on a naturally abundant and sustainable biopolymer of a shape‐memory, responsive multiphase cellulose derivative is presented. The wearable,

Biomedical EngineeringEngineering
7
Article|147 citations·2019
Snake fang–inspired stamping patch for transdermal delivery of liquid formulations
Won‐Gyu Bae, Hangil Ko, Jin-Young So, Hoon Yi, Chanho Lee, Dong‐Hun Lee, Yujin Ahn, Sang‐Hyeon Lee, Kyunghun Lee, Joonha Jun, Hyoung‐Ho Kim, Noo Li Jeon
SJR Q1Science Translational MedicineOA

A flexible microneedle patch that can transdermally deliver liquid-phase therapeutics would enable direct use of existing, approved drugs and vaccines, which are mostly in liquid form, without the need for additional drug solidification, efficacy verification, and subsequent approval. Specialized dissolving or coated microneedle patches that deliver reformulated, solidified therapeutics have made considerable advances; however, microneedles that can deliver liquid drugs and vaccines still remain

Pharmaceutical SciencePharmacology, Toxicology and Pharmaceutics
8
Article|147 citations·2010
Stretchable, Adhesion-Tunable Dry Adhesive by Surface Wrinkling
Hoon Eui Jeong, Moon Kyu Kwak, Kahp Y. Suh
SJR Q1Langmuir

We introduce a simple yet robust method of fabricating a stretchable, adhesion-tunable dry adhesive by combining replica molding and surface wrinkling. By utilizing a thin, wrinkled polydimethyl siloxane (PDMS) sheet with a thickness of 1 mm with built-in micropillars, active, dynamic control of normal and shear adhesion was achieved. Relatively strong normal (approximately 10.8 N/cm(2)) and shear adhesion (approximately 14.7 N/cm(2)) forces could be obtained for a fully extended (strained) PDMS

Mechanics of MaterialsEngineering
9
Article|134 citations·2006
Stretched Polymer Nanohairs by Nanodrawing
Hoon Eui Jeong, Sung Hoon Lee, Pilnam Kim, Kahp Y. Suh
SJR Q1Nano Letters

A simple, yet innovative, method is presented for fabricating high-aspect-ratio polymer nanohairs (aspect ratio >20) on a solid substrate by sequential application of molding and drawing of a thin polymer film. The polymer film was prepared by spin coating on a rigid or flexible substrate, and the temperature was raised above the polymer's glass transition while in conformal contact with a poly(urethane acrylate) mold having nanocavities. Consequently, capillary forces induced deformation of the

Biomedical EngineeringEngineering
10
Article|117 citations·2018
Bioinspired reversible hydrogel adhesives for wet and underwater surfaces
Hoon Yi, Sung Ho Lee, Minho Seong, Moon Kyu Kwak, Hoon Eui Jeong
SJR Q1Journal of Materials Chemistry BOA

Stable and reversible adhesion to wet surfaces is challenging owing to water molecules at the contact interface. In this study, we develop a hydrogel-based wet adhesive, which can exhibit strong and reversible adhesion to wet and underwater surfaces as well as to dry surfaces. The remarkable wet adhesion of the hydrogel adhesive is realized based on a synergetic integration of bioinspired microarchitectures and water-friendly and water-absorbing properties of the polymeric hydrogel. Under dry co

Surfaces, Coatings and FilmsMaterials Science
11
Article|109 citations·2009
Wettability of nanoengineered dual-roughness surfaces fabricated by UV-assisted capillary force lithography
Hoon Eui Jeong, Moon Kyu Kwak, Chan Ick Park, Kahp Y. Suh
SJR Q1Journal of Colloid and Interface Science
Mechanics of MaterialsEngineering
12
Article|108 citations·2018
Wet‐Responsive, Reconfigurable, and Biocompatible Hydrogel Adhesive Films for Transfer Printing of Nanomembranes
Hoon Yi, Minho Seong, Kahyun Sun, Insol Hwang, Kang‐Seok Lee, Chaenyung Cha, Tae‐il Kim, Hoon Eui Jeong
SJR Q1Advanced Functional Materials

Abstract This study presents a wet‐responsive and biocompatible smart hydrogel adhesive that exhibits switchable and controllable adhesions on demand for the simple and efficient transfer printing of nanomembranes. The prepared hydrogel adhesives show adhesion strength as high as ≈191 kPa with the aid of nano‐ or microstructure arrays on the surface in the dry state. When in contact with water, the nano/microscopic and macroscopic shape reconfigurations of the hydrogel adhesive occur, which turn

Biomedical EngineeringEngineering
13
Article|104 citations·2018
Tunable Multimodal Drop Bouncing Dynamics and Anti-Icing Performance of a Magnetically Responsive Hair Array
Sang‐Hyeon Lee, Minho Seong, Moon Kyu Kwak, Hyunwook Ko, Minsu Kang, Hyung Wook Park, Seong Min Kang, Hoon Eui Jeong
SJR Q1ACS Nano

Anti-icing materials that can efficiently limit ice formation have a strong potential to replace existing anti-icing techniques, such as Joule heating, chemical release, or mechanical removal, which are usually inefficient, expensive, and environmentally harmful. In this study, an anti-icing material based on a magnetically responsive hierarchical hair array that can actively modulate drop bouncing dynamics is presented. The magnetically responsive hair array exhibits an immediate and reversible

Surfaces, Coatings and FilmsMaterials Science
14
Article|101 citations·2013
Bacterial Recognition of Silicon Nanowire Arrays
Hoon Eui Jeong, Ilsoo Kim, Pierre Karam, Heon‐Jin Choi, Peidong Yang
SJR Q1Nano Letters

Understanding how living cells interact with nanostructures is integral to a better understanding of the fundamental principles of biology and the development of next-generation biomedical/bioenergy devices. Recent studies have demonstrated that mammalian cells can recognize nanoscale topographies and respond to these structures. From this perspective, there is a growing recognition that nanostructures, along with their specific physicochemical properties, can also be used to regulate the respon

Environmental EngineeringEnvironmental Science
15
Article|85 citations·2009
UV-assisted capillary force lithography for engineering biomimetic multiscale hierarchical structures: From lotus leaf to gecko foot hairs
Hoon Eui Jeong, Rhokyun Kwak, Ali Khademhosseini, Kahp Y. Suh
SJR Q1Nanoscale

This feature article provides an overview of the recently developed two-step UV-assisted capillary force lithography and its application to fabricating well-defined micro/nanoscale hierarchical structures. This method utilizes an oxygen inhibition effect in the course of UV irradiation curing and a two-step moulding process, to form multiscale hierarchical or suspended nanobridge structures in a rapid and reproducible manner. After a brief description of the fabrication principles, several examp

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringMechanics of MaterialsSurfaces, Coatings and FilmsMechanical EngineeringMaterials ChemistryElectrical and Electronic Engineering

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