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Jongsouk Yeo

Yonsei University · 工学

研究室紹介

Professor Jongsouk Yeo's research lab specializes in the design, synthesis, and application of advanced two-dimensional nanomaterials and nanostructured surfaces for next-generation optoelectronic, sensing, and energy-related technologies. The lab focuses on developing transparent and stretchable conductive materials like entangled graphene mesh networks, high-quality hexagonal boron nitride monolayers, and plasmonic nanostructures for ultrasensitive biosensing and nanophotonic devices. Innovative in-situ characterization techniques are employed to study dynamic physical transformations in nanomaterials under extreme conditions, such as thermal and mechanical stress. The lab also explores bioinspired hierarchical surfaces for super-repellent and self-cleaning functionalities, combining nanowires with organic waxes for multifunctional surfaces.

2D nanomaterialsplasmonic sensingtransparent conductorsin-situ nanomaterialshierarchical surfaces

Research Overview

Papers
124
Total Citations
1,108
Papers (5y)
26
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
26total
2022
2023
2024
2025
2026
Citations per year (5y)
102total
20222023202420252026

Selected Papers

15
1
Article|66 citations·2017
Highly Stretchable and Reliable, Transparent and Conductive Entangled Graphene Mesh Networks
Jaehyun Han, Jun‐Young Lee, Jihye Lee, Jong‐Souk Yeo
SJR Q1Advanced Materials

A highly stretchable and reliable, transparent and conductive entangled graphene mesh network (EGMN) exhibits an interconnected percolation network, as usually shown in 1D nanowires, but with the electrical, mechanical, and thermal properties of 2D graphene. The unique combination of the 2D material properties and the network structure of wrinkled, waved, and crumpled graphene enables the EGMN to demonstrate excellent electrical reliability, mechanical durability, and thermal stability, even und

Biomedical EngineeringEngineering
2
Article|63 citations·2014
Synthesis of wafer-scale hexagonal boron nitride monolayers free of aminoborane nanoparticles by chemical vapor deposition
Jaehyun Han, Jun‐Young Lee, Heemin Kwon, Jong‐Souk Yeo
SJR Q2Nanotechnology

Hexagonal boron nitride (h-BN) has gained great attention as a two-dimensional material, along with graphene. In this work, high-quality h-BN monolayers were grown in wafer scale (7 × 7 cm(2)) on Cu substrates by using low-pressure chemical vapor deposition (LPCVD). We created h-BN monolayers that were free of polymeric aminoborane (BH2NH2) nanoparticles, which are undesirable by-products of the ammonia borane precursor, by employing a simple filtering system in the CVD process. The optical band

Materials ChemistryMaterials Science
3
Article|57 citations·2013
Colorimetric detection of microRNA miR-21 based on nanoplasmonic core–satellite assembly
Jiyun Park, Jong‐Souk Yeo
SJR Q1Chemical Communications

In order to detect microRNAs (miRNAs), we developed a colorimetric sensing method on the basis of the plasmonic coupling effect. Gold nanoplasmonic particles (GNPs) are assembled in a core-satellite configuration in the presence of target miRNA, inducing remarkable changes in the scattering color and spectra at the picomolar level with selectivity.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Review|53 citations·2021
Quantum Plasmonics: Energy Transport Through Plasmonic Gap
Jihye Lee, Deok‐Jin Jeon, Jong‐Souk Yeo
SJR Q1Advanced Materials

At the interfaces of metal and dielectric materials, strong light-matter interactions excite surface plasmons; this allows electromagnetic field confinement and enhancement on the sub-wavelength scale. Such phenomena have attracted considerable interest in the field of exotic material-based nanophotonic research, with potential applications including nonlinear spectroscopies, information processing, single-molecule sensing, organic-molecule devices, and plasmon chemistry. These innovative plasmo

Biomedical EngineeringEngineering
5
Article|40 citations·2020
Mechanism of Heat-Induced Fusion of Silver Nanowires
Chang-Lae Kim, Joon-Young Lee, Dong-Gap Shin, Jong‐Souk Yeo, Dae‐Eun Kim
SJR Q1Scientific ReportsOA

Physical changes in arranged silver nanowires were monitored during progressive heating inside a transmission electron microscope. Using the in-situ experimental method, overall variation of silver nanowires and movement of the silver atoms could be assessed. The physical morphology of silver nanowires was rapidly transformed above 350 °C as they fused with each other, which led to extrusion of the silver atoms. Around 550 °C, silver nanowires were almost fused into one, filling a relatively lar

Electrical and Electronic EngineeringEngineering
6
Article|22 citations·2014
Three-Dimensional Triple Hierarchy Formed by Self-Assembly of Wax Crystals on CuO Nanowires for Nonwettable Surfaces
Jun‐Young Lee, Sasha Pechook, Deok‐Jin Jeon, Boaz Pokroy, Jong‐Souk Yeo
SJR Q1ACS Applied Materials & Interfaces

Novel hierarchical surfaces combining paraffin wax crystals and CuO nanowires are presented. We demonstrate a bioinspired hierarchical wax on nanowire (NW) structures having high water and ethylene glycol repellence. In general, vertically grown nanowire arrays can provide a superhydrophobic surface (SHS) due to extremely high surface roughness but cannot repel ethylene glycol. In this paper, C36H74 and C50H102 waxes are thermally evaporated on the surface of CuO NWs, forming highly ordered, thr

Surfaces, Coatings and FilmsMaterials Science
7
Article|21 citations·2015
Hierarchical Nanoflowers on Nanograss Structure for a Non-wettable Surface and a SERS Substrate
Jun‐Young Lee, Jaehyun Han, Jihye Lee, Seungmuk Ji, Jong‐Souk Yeo
SJR Q1Nanoscale Research LettersOA

Hierarchical nanostructures of CuO nanoflowers on nanograss were investigated for self-cleaning and surface plasmonic applications. We achieved the hierarchical nanostructures using one-step oxidation process by controlling the formation of flower-like nanoscale residues (nanoflowers) on CuO nanograss. While the nanograss structure of CuO has a sufficient roughness for superhydrophobic characteristics, the additional hierarchy of nanoflowers on nanograss leads to a semi-reentrant structure with

Electronic, Optical and Magnetic MaterialsMaterials Science
8
Article|21 citations·2014
Multilevel Hierarchy of Fluorinated Wax on CuO Nanowires for Superoleophobic Surfaces
J. Y. Lee, Sasha Pechook, Boaz Pokroy, Jong‐Souk Yeo
SJR Q1Langmuir

We demonstrate the multilevel hierarchy of nanoscale wax crystals on nanowire (NW) structures that strongly repels not only water but also olive oil and hexadecane. We deposited C24F50-fluorinated wax (F-wax) using thermal evaporation on the surface of CuO NWs. Fluorinated wax crystals are self-assembled on the CuO NWs forming three-dimensional hierarchical structures. The achieved multilevel hierarchy has strongly repelled water, glycerol, ethylene glycol, and olive oil with contact angles (CAs

Surfaces, Coatings and FilmsMaterials Science
9
Article|21 citations·2015
Contact Transfer Printing of Side Edge Prefunctionalized Nanoplasmonic Arrays for Flexible microRNA Biosensor
Jihye Lee, Jiyun Park, Jun‐Young Lee, Jong‐Souk Yeo
SJR Q1Advanced ScienceOA

For a nanoplasmonic approach of wearable biochip platform, understanding correlation between near‐field enhancement on nanostructures and sensing capability is a crucial step to improve the sensitivity in biosensing. A novel and effective method is demonstrated to increase sensitivity with the enhanced electric fields and to reduce noise with targeted functionalization enabled by transferring side edge prefunctionalized (SEPF) nanostructure arrays onto flexible substrates. Nanostructure sidewall

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|20 citations·2010
69.4: Novel Flexible Reflective Color Media Integrated with Transparent Oxide TFT Backplane
Jong‐Souk Yeo, Tim Emery, Gregg Combs, Vincent Korthuis, Jeff Mabeck, Randy Hoffman, Tim Koch, Zhang‐Lin Zhou, Dick Henze
SID Symposium Digest of Technical Papers

Abstract A novel architecture and proprietary electrically addressable inks have been developed to provide disruptive, print‐like full color reflective digital media solutions based on an electrokinetic technology platform. The thin, flexible, low‐power, reflective electronic media is fabricated with a new roll‐to‐roll manufacturing platform. Here we demonstrate the integration of this media with multi‐component oxide (MCO) thin‐film transistor (TFT) backplane for an active matrix reflective ele

Electrical and Electronic EngineeringEngineering
11
Article|20 citations·2016
Large-area layer-by-layer controlled and fully bernal stacked synthesis of graphene
Jaehyun Han, Jun‐Young Lee, Jong‐Souk Yeo
SJR Q1Carbon
Materials ChemistryMaterials Science
12
Article|18 citations·2016
Atomic Migration Induced Crystal Structure Transformation and Core-Centered Phase Transition in Single Crystal Ge2Sb2Te5 Nanowires
Jun‐Young Lee, Jeong-Hyeon Kim, Deok‐Jin Jeon, Jaehyun Han, Jong‐Souk Yeo
SJR Q1Nano Letters

A phase change nanowire holds a promise for nonvolatile memory applications, but its transition mechanism has remained unclear due to the analytical difficulties at atomic resolution. Here we obtain a deeper understanding on the phase transition of a single crystalline Ge 2 Sb 2 Te 5 nanowire (GST NW) using atomic scale imaging, diffraction, and chemical analysis. Our cross-sectional analysis has shown that the as-grown hexagonal close-packed structure of the single crystal GST NW transforms to

Materials ChemistryMaterials Science
13
Article|15 citations·2018
On-chip plasmonic detection of microRNA-106a in gastric cancer using hybridized gold nanoparticles
Sang-Heon Park, Jihye Lee, Jong‐Souk Yeo
SJR Q1Sensors and Actuators B Chemical
Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|15 citations·2015
Enhanced Detection of Broadband Incoherent Light with Nanoridge Plasmonics
Jeong-Hyeon Kim, Jong‐Souk Yeo
SJR Q1Nano Letters

Emerging photonic integrated circuit technologies require integrative functionality at ultrahigh speed and dimensional compatibility with ultrasmall electronics. Plasmonics offers a promise of addressing these challenges with novel nanophotonic approaches for on-chip information processing or sensing applications. Short communication range and strong light-matter interaction enabled by on-chip plasmonics allow us to extend beyond a conventional approach of integrating coherent and narrowband lig

Biomedical EngineeringEngineering
15
Article|13 citations·2023
How keratin cortex thickness affects iridescent feather colours
Deok‐Jin Jeon, Seungmuk Ji, Eunok Lee, Jihun Kang, Jiyeong Kim, Liliana D’Alba, Marie Manceau, Matthew D. Shawkey, Jong‐Souk Yeo
SJR Q1Royal Society Open ScienceOA

The bright, saturated iridescent colours of feathers are commonly produced by single and multi-layers of nanostructured melanin granules (melanosomes), air and keratin matrices, surrounded by an outer keratin cortex of varying thicknesses. The role of the keratin cortex in colour production remains unclear, despite its potential to act as a thin film or absorbing layer. We use electron microscopy, optical simulations and oxygen plasma-mediated experimental cortex removal to show that differences

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Biomedical EngineeringMaterials ChemistryElectrical and Electronic EngineeringElectronic, Optical and Magnetic MaterialsSurfaces, Coatings and FilmsMolecular Biology

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