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Dongseok Seo

Ewha Womans University · 材料科学

研究室紹介

Professor Dongseok Seo's research lab specializes in advanced 2D materials and carbon nanomaterials, focusing on their integration with functional oxides and heterostructures to explore novel electronic, thermoelectric, and ferroelectric phenomena. The lab investigates flexible and stretchable CNT-based devices for robust thermal and electronic applications, while also pioneering the design of high-performance, low-noise field-effect transistors using transition metal dichalcogenides and graphene. A key research direction involves harnessing the thermoelectric effect in nanoscale devices, particularly in phase change memory systems, to achieve energy-efficient operation. The lab combines advanced fabrication techniques with fundamental physics to develop next-generation nanoelectronics with enhanced functionality and stability.

2D materialscarbon nanotubesthermoelectric devicesheterostructureslow-frequency noise

Research Overview

Papers
171
Total Citations
6,687
Papers (5y)
29
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2022
2023
2024
2025
2026
Citations per year (5y)
333total
20222023202420252026

Selected Papers

15
1
Article|77 citations·2018
Versatile, High‐Power, Flexible, Stretchable Carbon Nanotube Sheet Heating Elements Tolerant to Mechanical Damage and Severe Deformation
Yourack Lee, Viet Thong Le, Jeong‐Gyun Kim, Haeyong Kang, Eun Seong Kim, Seung‐Eon Ahn, Dongseok Suh
SJR Q1Advanced Functional Materials

Abstract A macroscopic carbon nanotube (CNT) sheet‐based heating element having flexible, stretchable, and damage‐tolerant features, and wide applicability in harsh environments, is introduced. Because of the intrinsic connection of extremely flexible CNT bundles throughout the sample by van der Waals interactions without use of a binder, the electrical resistance variation of the CNT sheet on elastomer heating element as a function of strain is completely suppressed to some extent, even when st

Biomedical EngineeringEngineering
2
Article|70 citations·2019
Synergetic design of enlarged surface area and pseudo-capacitance for fiber-shaped supercapacitor yarn
Thi Suong Le, Thuy‐Kieu Truong, Huynh Van Ngoc, Joonho Bae, Dongseok Suh
SJR Q1Nano EnergyOA
Electronic, Optical and Magnetic MaterialsMaterials Science
3
Article|65 citations·2015
Ferroelectric Single-Crystal Gated Graphene/Hexagonal-BN/Ferroelectric Field-Effect Transistor
Nahee Park, Haeyong Kang, Jeongmin Park, Yourack Lee, Yoojoo Yun, Jeong-Ho Lee, Sang‐Goo Lee, Young Hee Lee, Dongseok Suh, Young Hee Lee, Dongseok Suh
SJR Q1ACS Nano

The effect of a ferroelectric polarization field on the charge transport in a two-dimensional (2D) material was examined using a graphene monolayer on a hexagonal boron nitride (hBN) field-effect transistor (FET) fabricated using a ferroelectric single-crystal substrate, (1-x)[Pb(Mg1/3Nb2/3)O3]-x[PbTiO3] (PMN-PT). In this configuration, the intrinsic properties of graphene were preserved with the use of an hBN flake, and the influence of the polarization field from PMN-PT could be distinguished.

Materials ChemistryMaterials Science
4
Article|64 citations·2022
Twist-Stabilized, Coiled Carbon Nanotube Yarns with Enhanced Capacitance
Wonkyeong Son, Sungwoo Chun, Jae Myeong Lee, Gichan Jeon, Hyeon Jun Sim, Hyeon Woo Kim, Sung Beom Cho, Dongyun Lee, Jun‐Young Park, Joonhyeon Jeon, Dongseok Suh, Changsoon Choi
SJR Q1ACS Nano

Coil-structured carbon nanotube (CNT) yarns have recently attracted considerable attention. However, structural instability due to heavy twist insertion, and inherent hydrophobicity restrict its wider application. We report a twist-stable and hydrophilic coiled CNT yarn produced by the facile electrochemical oxidation (ECO) method. The ECO-treated coiled CNT yarn is prepared by applying low potentiostatic voltages (3.0-4.5 V vs Ag/AgCl) between the coiled CNT yarn and a counter electrode immerse

Electronic, Optical and Magnetic MaterialsMaterials Science
5
Review|52 citations·2018
Synergetic Behavior in 2D Layered Material/Complex Oxide Heterostructures
Kyeong Tae Kang, Jeongmin Park, Dongseok Suh, Woo Seok Choi
SJR Q1Advanced MaterialsOA

Abstract The marriage between a 2D layered material (2DLM) and a complex transition metal oxide (TMO) results in a variety of physical and chemical phenomena that cannot be achieved in either material alone. Interesting recent discoveries in systems such as graphene/SrTiO 3 , graphene/LaAlO 3 /SrTiO 3 , graphene/ferroelectric oxide, MoS 2 /SrTiO 3 , and FeSe/SrTiO 3 heterostructures include voltage scaling in field‐effect transistors, charge state coupling across an interface, quantum conductanc

Materials ChemistryMaterials Science
6
Article|48 citations·2010
Thermoelectric heating of Ge2Sb2Te5 in phase change memory devices
Dongseok Suh, Cheolkyu Kim, Kijoon H. P. Kim, Youn-Seon Kang, Tae-Yon Lee, Yoonho Khang, Tae Sang Park, Young‐Gui Yoon, Jino Im, Jisoon Ihm
SJR Q1Applied Physics Letters

We report on the demonstration of the active thermoelectric application to nanometer-scaled semiconductor devices. The thermoelectric heating already exists during programming in conventional phase change memory (PRAM) cells, which is only a minor supplement to Joule heating. Here, by rigorously designing devices, we have demonstrated an unprecedentedly high efficiency of PRAM, where the majority of the heat is supplied by the thermoelectric effect.

Materials ChemistryMaterials Science
7
Article|46 citations·2016
Suppression of Interfacial Current Fluctuation in MoTe2 Transistors with Different Dielectrics
Hyunjin Ji, Min‐Kyu Joo, Yoojoo Yun, Ji Hoon Park, Gwanmu Lee, Byoung Hee Moon, Hojoon Yi, Dongseok Suh, Seong Chu Lim
SJR Q1ACS Applied Materials & Interfaces

For transition metal dichalcogenides, the fluctuation of the channel current due to charged impurities is attributed to a large surface area and a thickness of a few nanometers. To investigate current variance at the interface of transistors, we obtain the low-frequency (LF) noise features of MoTe2 multilayer field-effect transistors with different dielectric environments. The LF noise properties are analyzed using the combined carrier mobility and carrier number fluctuation model which is addit

Materials ChemistryMaterials Science
8
Article|34 citations·2021
Superior and stable ferroelectric properties of hafnium-zirconium-oxide thin films deposited via atomic layer deposition using cyclopentadienyl-based precursors without annealing
Hyo‐Bae Kim, Moonyoung Jung, Youkyoung Oh, Seungwon Lee, Dongseok Suh, Ji‐Hoon Ahn
SJR Q1Nanoscale

HfO2-based ferroelectric thin films deposited via atomic layer deposition have been extensively studied as promising candidates for next-generation ferroelectric devices. The conversion of an amorphous Hf1-xZrxO2 film to the ferroelectric phase (non-centrosymmetric orthorhombic phase) has been achieved through annealing using a post-thermal process. However, in this study, we present the first report of ferroelectricity of hafnium-zirconium-oxide (HZO) thin films deposited via atomic layer depos

Electrical and Electronic EngineeringEngineering
9
Article|29 citations·2017
Quantum Conductance Probing of Oxygen Vacancies in SrTiO3 Epitaxial Thin Film using Graphene
Kyeong Tae Kang, Haeyong Kang, Jeong-Min Park, Dongseok Suh, Woo Seok Choi
SJR Q1Advanced Materials

(STO) thin film is studied to understand the role of oxygen vacancies in determining the dielectric properties of STO. As the gate-voltage sweep range is gradually increased in the device, systematic generation and annihilation of oxygen vacancies, evidenced from the hysteretic conductance behavior in the graphene, are observed. Furthermore, based on the experimentally observed linear scaling relation between the effective capacitance and the voltage sweep range, a simple model is constructed to

Electrical and Electronic EngineeringEngineering
10
Article|29 citations·2016
Large-Scale Graphene on Hexagonal-BN Hall Elements: Prediction of Sensor Performance without Magnetic Field
Min‐Kyu Joo, Joonggyu Kim, Ji Hoon Park, Van Luan Nguyen, Ki Kang Kim, Young Hee Lee, Dongseok Suh
SJR Q1ACS Nano

A graphene Hall element (GHE) is an optimal system for a magnetic sensor because of its perfect two-dimensional (2-D) structure, high carrier mobility, and widely tunable carrier concentration. Even though several proof-of-concept devices have been proposed, manufacturing them by mechanical exfoliation of 2-D material or electron-beam lithography is of limited feasibility. Here, we demonstrate a high quality GHE array having a graphene on hexagonal-BN (h-BN) heterostructure, fabricated by photol

Materials ChemistryMaterials Science
11
Article|29 citations·2016
Multifunctional characterization of carbon nanotube sheets, yarns, and their composites
Thuy‐Kieu Truong, Yourack Lee, Dongseok Suh
SJR Q2Current Applied Physics
Materials ChemistryMaterials Science
12
Article|26 citations·2007
Nonvolatile switching characteristics of laser-ablated Ge2Sb2Te5 nanoparticles for phase-change memory applications
Dongseok Suh, Eun Hye Lee, Kijoon H. P. Kim, Jin‐Seo Noh, Woong-Chul Shin, Youn-Seon Kang, Cheolkyu Kim, Yoonho Khang, H. R. Yoon, William Jo
SJR Q1Applied Physics Letters

Electrical characteristics of Ge2Sb2Te5 (GST) nanoparticles have been examined for a phase-change memory applications. The GST nanoparticles were generated by in situ pulsed laser ablation and their crystal structure formation was confirmed [H. R. Yoon et al., J. Non-Cryst. Solids 351, 3430 (2005)]. A stacked structure of the GST nanoparticles with 10nm of average diameter shows reversible nonvolatile switching characteristics between a high resistance state and a low resistance state as in the

Materials ChemistryMaterials Science
13
Article|25 citations·2001
Helical polyacetylene heavily doped with iodine: Magnetotransport
Dongseok Suh, T. J. Kim, А. Н. Алешин, Y. W. Park, Guanghai Piao, Kazuo Akagi, Hideki Shirakawa, J. S. Qualls, S. Y. Han, J. S. Brooks
SJR Q1The Journal of Chemical Physics

The magnetoconductivity of two kinds of iodine doped helical polyacetylene, R- and S-polyacetylene, were investigated to understand the effect of the intrafibril and the interfibrillar interaction in the polyacetylene system. The zero-field resistivity ratio, ρr=ρ(1.2 K)/ρ(300 K), is comparable to that of stretch-oriented high-density polyacetylene film, which indicates the partial alignment of chains inside a polymer fiber. At low magnetic fields, the small negative component of magnetoconducti

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|22 citations·2018
Flexible and Thermally Stable Optical Polarizers Based on Highly Aligned Carbon Nanotube Sheets for the Visible Spectral Range
Moonyoung Jung, Youngji Noh, Dongseok Suh, Seung‐Eon Ahn
SJR Q1Advanced Materials TechnologiesOA

Abstract Development of new types of optical components applicable to flexible and stretched substrates is essential for designing innovative display platforms for wearable and outdoor applications. Here, a novel polarizer based on highly aligned macroscopic carbon nanotube (CNT) sheets with flexibility, thermal stability, high polarization efficiency, and high transmittance is introduced. Since the conductive multiwalled CNTs are essentially held together by van der Waals forces, wire‐grid‐type

Biomedical EngineeringEngineering
15
Article|17 citations·2022
Two-dimensional ferromagnetism detected by proximity-coupled quantum Hall effect of graphene
Tuan Khanh Chau, Sung Ju Hong, Haeyong Kang, Dongseok Suh
SJR Q1npj Quantum MaterialsOA

Abstract The recent discovery of a two-dimensional van der Waals magnet has paved the way for an enhanced understanding of two-dimensional magnetic systems. The development of appropriate heterostructures in this emerging class of materials is required as the next step towards applications. Here, we report on the electrical transport in monolayer graphene coupled with the two-dimensional ferromagnet Cr 2 Ge 2 Te 6 (CGT). Graphene that forms an interface with CGT is electron-doped owing to charge

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryElectrical and Electronic EngineeringBiomedical EngineeringElectronic, Optical and Magnetic MaterialsPolymers and PlasticsAtomic and Molecular Physics, and Optics

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