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Sung Woo Hwang

Seoul National University · 工学

研究室紹介

Professor Sung Woo Hwang's research lab specializes in advanced nanomaterials and 2D materials for next-generation electronic and optoelectronic applications. Key research directions include the design and synthesis of high-performance semiconductor nanostructures—such as single-crystal nanowires and heterostructures—engineered for tunable electrical and optical properties. The lab also investigates fundamental phenomena in low-dimensional systems, including phonon engineering in thermoelectric materials and relativistic quantum effects in entangled states, while focusing on practical device integration such as low-resistance contacts and broadband photodetectors. Their work bridges materials synthesis, nanoscale characterization, and device physics to enable energy-efficient and high-speed nanoelectronics and infrared technologies.

nanomaterials2D materialsthermoelectric materialsnanowiresoptoelectronic devices

Research Overview

Papers
401
Total Citations
11,843
Papers (5y)
27
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
27total
2021
2022
2023
2024
2025
Citations per year (5y)
1,197total
20212022202320242025

Selected Papers

15
1
Article|298 citations·2009
Non-enzymatic electrochemical CuO nanoflowers sensor for hydrogen peroxide detection
Minjung Song, Sung Woo Hwang, Dongmok Whang
SJR Q1Talanta
Electrical and Electronic EngineeringEngineering
2
Article|236 citations·2014
Highly Stretchable Transistors Using a Microcracked Organic Semiconductor
Alex Chortos, Josh Lim, John W. F. To, Michael Vosgueritchian, Thomas J. Dusseault, Tae‐Ho Kim, Sungwoo Hwang, Zhenan Bao
SJR Q1Advanced Materials

Organic transistors with elastic conductors and dielectrics can be stretched up to 250% strain while maintaining the transistor characteristics. Strain-independent properties can be achieved after an initial “programming” cycle that causes the formation of microcracks in the semiconductor. The change in mobility with strain follows the same trend in different stretching directions. Liberating electronic devices from the confines of traditional rigid substrates can improve mechanical robustness a

Biomedical EngineeringEngineering
3
Article|161 citations·2018
Deep-learning-based inverse design model for intelligent discovery of organic molecules
Kyungdoc Kim, Seokho Kang, Jiho Yoo, Youngchun Kwon, Young Min Nam, Dongseon Lee, Inkoo Kim, Youn-Suk Choi, Yongsik Jung, Sangmo Kim, Won‐Joon Son, Jhun-Mo Son
SJR Q1npj Computational MaterialsOA

Abstract The discovery of high-performance functional materials is crucial for overcoming technical issues in modern industries. Extensive efforts have been devoted toward accelerating and facilitating this process, not only experimentally but also from the viewpoint of materials design. Recently, machine learning has attracted considerable attention, as it can provide rational guidelines for efficient material exploration without time-consuming iterations or prior human knowledge. In this regar

Materials ChemistryMaterials Science
4
Article|158 citations·2017
Fully Stretchable Optoelectronic Sensors Based on Colloidal Quantum Dots for Sensing Photoplethysmographic Signals
Tae‐Ho Kim, Chang‐Seok Lee, Sang-Won Kim, Jaehyun Hur, Sangmin Lee, Keun Wook Shin, Young-Zoon Yoon, Moon Kee Choi, Jiwoong Yang, Dae‐Hyeong Kim, Taeghwan Hyeon, Seongjun Park
SJR Q1ACS Nano

Flexible and stretchable optoelectronic devices can be potentially applied in displays, biosensors, biomedicine, robotics, and energy generation. The use of nanomaterials with superior optical properties such as quantum dots (QDs) is important in the realization of wearable displays and biomedical devices, but specific structural design as well as selection of materials should preferentially accompany this technology to realize stretchable forms of these devices. Here, we report stretchable opto

Biomedical EngineeringEngineering
5
Article|125 citations·2016
Control of Triboelectrification by Engineering Surface Dipole and Surface Electronic State
Kyung‐Eun Byun, Yeonchoo Cho, Minsu Seol, Seongsu Kim, Sang‐Woo Kim, Hyeon‐Jin Shin, Seongjun Park, Sungwoo Hwang, Seongjun Park, Sungwoo Hwang
SJR Q1ACS Applied Materials & Interfaces

Although triboelectrification is a well-known phenomenon, fundamental understanding of its principle on a material surface has not been studied systematically. Here, we demonstrated that the surface potential, especially the surface dipoles and surface electronic states, governed the triboelectrification by controlling the surface with various electron-donating and -withdrawing functional groups. The functional groups critically affected the surface dipoles and surface electronic states followed

Biomedical EngineeringEngineering
6
Article|97 citations·2009
Catalyst-free Growth of Single-Crystal Silicon and Germanium Nanowires
Byung‐Sung Kim, Tae-Woong Koo, Jae‐Hyun Lee, Duk Soo Kim, Young Chai Jung, Sung Woo Hwang, Byoung Lyong Choi, Eun Kyung Lee, Jong Min Kim, Dongmok Whang
SJR Q1Nano Letters

We report metal-free synthesis of high-density single-crystal elementary semiconductor nanowires with tunable electrical conductivities and systematic diameter control with narrow size distributions. Single-crystal silicon and germanium nanowires were synthesized by nucleation on nanocrystalline seeds and subsequent one-dimensional anisotropic growth without using external catalyst. Systematic control of the diameters with tight distribution and tunable doping concentration were realized by adju

Biomedical EngineeringEngineering
7
Article|83 citations·2010
Amperometric hydrogen peroxide biosensor based on a modified gold electrode with silver nanowires
Min-Jung Song, Sung Woo Hwang, Dongmok Whang
SJR Q2Journal of Applied Electrochemistry
Electrical and Electronic EngineeringEngineering
8
Article|73 citations·2009
Effect of surface modification conditions on the synthesis of mesoporous crack-free silica aerogel monoliths from waterglass via ambient-drying
Sungwoo Hwang, Tae Youn Kim, Sang‐Hoon Hyun
SJR Q1Microporous and Mesoporous Materials
SpectroscopyChemistry
9
Article|59 citations·2017
Color-selective photodetection from intermediate colloidal quantum dots buried in amorphous-oxide semiconductors
Kyung‐Sang Cho, Keun Heo, Chan‐Wook Baik, Jun Young Choi, Heejeong Jeong, Sungwoo Hwang, Sang Yeol Lee
SJR Q1Nature CommunicationsOA

Abstract We report color-selective photodetection from intermediate, monolayered, quantum dots buried in between amorphous-oxide semiconductors. The proposed active channel in phototransistors is a hybrid configuration of oxide-quantum dot-oxide layers, where the gate-tunable electrical property of silicon-doped, indium-zinc-oxide layers is incorporated with the color-selective properties of quantum dots. A remarkably high detectivity (8.1 × 10 13 Jones) is obtained, along with three major findi

Electrical and Electronic EngineeringEngineering
10
Article|54 citations·2008
Optimization of instantaneous solvent exchange/surface modification process for ambient synthesis of monolithic silica aerogels
Sungwoo Hwang, Tae Youn Kim, Sang‐Hoon Hyun
SJR Q1Journal of Colloid and Interface Science
SpectroscopyChemistry
11
Article|49 citations·2017
Te vacancy-driven superconductivity in orthorhombic molybdenum ditelluride
Suyeon Cho, Se Hwang Kang, Ho Sung Yu, Hyo Won Kim, Wonhee Ko, Sung Woo Hwang, Woo Hyun Han, Duk‐Hyun Choe, Young Hwa Jung, K. J. Chang, Young Hee Lee, Heejun Yang
SJR Q12D Materials

Two-dimensional (2D) transition metal dichalcogenides (TMDs) have received great attentions because of diverse quantum electronic states such as topological insulating (TI), Weyl semimetallic (WSM) and superconducting states. Recently, the superconducting states emerged in pressurized semimetallic TMDs such as MoTe2 and WTe2 have become one of the central issues due to their predicted WSM states. However, the difficulty in synthetic control of chalcogen vacancies and the ambiguous magneto transp

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
12
Article|44 citations·2015
Enhanced thermoelectric performance of n-type Cu0.008Bi2Te2.7Se0.3 by band engineering
Kyu Hyoung Lee, Sang Il Kim, Sang Il Kim, Hyeona Mun, Byungki Ryu, Soon‐Mok Choi, Hee Jung Park, Sungwoo Hwang, Sung Wng Kim, Sung Wng Kim
SJR Q1Journal of Materials Chemistry C

We herein report the significantly improved thermoelectric performance of n-type Bi<sub>2</sub>Te<sub>2.7</sub>Se<sub>0.3</sub> polycrystalline bulks through band structure engineering achieved by Au-doping.

Materials ChemistryMaterials Science
13
Article|44 citations·2017
KSHV-encoded viral interferon regulatory factor 4 (vIRF4) interacts with IRF7 and inhibits interferon alpha production
Sungwoo Hwang, DongIk Kim, Jae U. Jung, Hye-Ra Lee
SJR Q2Biochemical and Biophysical Research Communications
OncologyMedicine
14
Article|41 citations·2010
Pt-polyaniline nanocomposite on boron-doped diamond electrode for amperometic biosensor with low detection limit
Min-Jung Song, Jong‐Hoon Kim, Seung‐Koo Lee, Jae‐Hyun Lee, Dae Soon Lim, Sung Woo Hwang, Dongmok Whang
SJR Q1Microchimica Acta
Electrical and Electronic EngineeringEngineering
15
Article|38 citations·2012
Enhancing the Thermoelectric Properties of p-Type Bulk Bi-Sb-Te Nanocomposites via Solution-Based Metal Nanoparticle Decoration
Sungwoo Hwang, Sang‐il Kim, Kyunghan Ahn, Jong Wook Roh, Dae‐Jin Yang, Sang-Mock Lee, Kyu-Hyoung Lee
SJR Q2Journal of Electronic Materials
Materials ChemistryMaterials Science

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryAtomic and Molecular Physics, and OpticsBiomedical EngineeringElectronic, Optical and Magnetic MaterialsMolecular Biology

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