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Hee Tae Jung

Korea Advanced Institute of Science and Technology · Materials Science

About the Lab

Professor Hee Tae Jung's research lab specializes in the design, synthesis, and application of two-dimensional (2D) nanomaterials, with a strong focus on MXenes, graphene, and black phosphorus. The lab investigates the fundamental mechanisms of gas sensing in 2D materials, particularly the roles of surface charge transfer, Schottky barrier modulation, and interfacial interactions. Advanced characterization techniques, including cryo-electron microscopy and in situ imaging, are employed to study etching dynamics, structural evolution, and defect engineering in 2D materials at the atomic scale. The ultimate goal is to develop high-performance, selective, and responsive chemical sensors for environmental and health monitoring applications.

2D materialsMXenegas sensingnanomaterials synthesissurface charge transfer

Research Overview

Papers
400
Total Citations
20,204
Papers (5y)
56
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
56total
2022
2023
2024
2025
2026
Citations per year (5y)
1,018total
20222023202420252026

Selected Papers

15
1
Article|1,645 citations·2018
Metallic Ti3C2Tx MXene Gas Sensors with Ultrahigh Signal-to-Noise Ratio
Seon Joon Kim, Hyeong‐Jun Koh, Chang E. Ren, Ohmin Kwon, Kathleen Maleski, Soo‐Yeon Cho, Babak Anasori, Choong‐Ki Kim, Yang-Kyu Choi, Jihan Kim, Yury Gogotsi, Hee‐Tae Jung
SJR Q1ACS NanoOA

High Resolution Image Download MS PowerPoint Slide Achieving high sensitivity in solid-state gas sensors can allow the precise detection of chemical agents. In particular, detection of volatile organic compounds (VOCs) at the parts per billion (ppb) level is critical for the early diagnosis of diseases. To obtain high sensitivity, two requirements need to be simultaneously satisfied: (i) low electrical noise and (ii) strong signal, which existing sensor materials cannot meet. Here, we demonstrat

Materials ChemistryMaterials Science
2
Article|504 citations·2015
Highly Enhanced Gas Adsorption Properties in Vertically Aligned MoS2 Layers
Soo‐Yeon Cho, Seon Joon Kim, Youhan Lee, Jong-Seon Kim, Woo‐Bin Jung, Hae‐Wook Yoo, Jihan Kim, Hee‐Tae Jung, Jihan Kim, Hee‐Tae Jung
SJR Q1ACS Nano

In this work, we demonstrate that gas adsorption is significantly higher in edge sites of vertically aligned MoS2 compared to that of the conventional basal plane exposed MoS2 films. To compare the effect of the alignment of MoS2 on the gas adsorption properties, we synthesized three distinct MoS2 films with different alignment directions ((1) horizontally aligned MoS2 (basal plane exposed), (2) mixture of horizontally aligned MoS2 and vertically aligned layers (basal and edge exposed), and (3)

Materials ChemistryMaterials Science
3
Article|425 citations·2016
Superior Chemical Sensing Performance of Black Phosphorus: Comparison with MoS2 and Graphene
Soo‐Yeon Cho, Youhan Lee, Hyeong‐Jun Koh, Hyun-Ju Jung, Hyun-Ju Jung, Jong‐Seon Kim, Jong‐Seon Kim, Hae‐Wook Yoo, Jihan Kim, Jihan Kim, Hee‐Tae Jung, Hee‐Tae Jung
SJR Q1Advanced Materials

Superior chemical sensing performance of black phosphorus (BP) is demonstrated by comparison with MoS2 and graphene. Dynamic sensing measurements of multichannel detection show that BP displays highly sensitive, selective, and fast-responsive NO2 sensing performance compared to the other representative 2D sensing materials. As a service to our authors and readers, this journal provides supporting information supplied by the authors. Such materials are peer reviewed and may be re-organized for on

Materials ChemistryMaterials Science
4
Article|424 citations·2009
Layer-by-layer assembly of graphene and gold nanoparticles by vacuum filtration and spontaneous reduction of gold ions
Byung‐Seon Kong, Jianxin Geng, Hee‐Tae Jung
SJR Q1Chemical Communications

Layer-by-layer films comprised of alternating graphene and gold nanoparticle layers are readily produced by the two-step procedure involving the use of vacuum filtration of a reduced graphene oxide solution to fabricate the graphene thin film on the quartz substrate, followed by gold nanoparticle formation by spontaneous reduction of gold ions in a gold salt solution on the graphene films.

Materials ChemistryMaterials Science
5
Article|366 citations·2014
Tunable Volatile Organic Compounds Sensor by Using Thiolated Ligand Conjugation on MoS2
Jong-Seon Kim, Hae‐Wook Yoo, Hyung Ouk Choi, Hee‐Tae Jung
SJR Q1Nano Letters

One of the most important issues in the development of gas sensors for breath analysis is the fabrication of gas sensor arrays that possess different responses for recognizing patterns for volatile organic compounds (VOCs). Here, we develop a high-performance chemiresistor with a tunable sensor response and high sensitivity for representative VOC groups by using molybdenum disulfide (MoS2) and by conjugating a thiolated ligand (mercaptoundecanoic acid (MUA)) to MoS2 surface. Primitive and MUA-co

Electrical and Electronic EngineeringEngineering
6
Article|326 citations·2010
Porphyrin Functionalized Graphene Sheets in Aqueous Suspensions: From the Preparation of Graphene Sheets to Highly Conductive Graphene Films
Jianxin Geng, Hee‐Tae Jung
SJR Q1The Journal of Physical Chemistry C

Graphene has a unique structure and potential applications in nanoelectronics, nanocomposites, conductive and transparent films, etc. Synthesis of graphene is one of the major research efforts in order to make rapid developments in graphene research. In this study, a new method, that makes use of the π−π interactions between porphyrin and graphene to stabilize the chemically converted graphene (CCG), has been developed for preparation of CCG via chemical reduction of exfoliated graphene oxide (G

Materials ChemistryMaterials Science
7
Article|299 citations·2020
In Situ Formation of Multiple Schottky Barriers in a Ti3C2 MXene Film and its Application in Highly Sensitive Gas Sensors
Jung‐Hoon Choi, Yong‐Jae Kim, Soo‐Yeon Cho, Kangho Park, Hohyung Kang, Seon Joon Kim, Hee‐Tae Jung
SJR Q1Advanced Functional Materials

Abstract The main gas‐sensing mechanisms of 2D materials are surface charge transfer by analytes and Schottky barrier (SB) modulation at the interface between the metallic and semiconducting surfaces. In particular, dramatic differences in the gas‐sensing performances of 2D materials originate from SB modulation. However, SB sites typically exist only at the interface between the semiconducting channel material and the metal electrode. Herein, in situ formed multiple SBs in a single gas‐sensing

Materials ChemistryMaterials Science
8
Article|277 citations·2021
Etching Mechanism of Monoatomic Aluminum Layers during MXene Synthesis
Yong-Jae Kim, Seon Joon Kim, Darae Seo, Yoonjeong Chae, Mark Anayee, Yonghee Lee, Yury Gogotsi, Chi Won Ahn, Hee‐Tae Jung
SJR Q1Chemistry of Materials

Understanding the etching mechanisms of MXene and obtaining direct insights into the influence of etchants on structural features and defects are of critical importance for improving MXene properties, optimization of etching protocols, and exploring new MXene compositions. Despite their importance, such studies have been challenging because of the monoatomic thickness of the A-element layers being etched and aggressive etchants that hinder in situ studies. Here, we visualize the etching behavior

Materials ChemistryMaterials Science
9
Article|265 citations·2001
The origins of stability of spontaneous vesicles
Hee‐Tae Jung, Bret A. Coldren, J. A. Zasadzinski, D. J. Iampietro, E. W. Kaler
SJR Q1Proceedings of the National Academy of SciencesOA

Equilibrium unilamellar vesicles are stabilized by one of two distinct mechanisms depending on the value of the bending constant. Helfrich undulations ensure that the interbilayer potential is always repulsive when the bending constant, K, is of order k(B)T. When K k(B)T, unilamellar vesicles are stabilized by the spontaneous curvature that picks out a particular vesicle radius; other radii are disfavored energetically. We present measurements of the bilayer elastic constant and the spontaneous

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|261 citations·2017
Selective Molecular Separation on Ti3C2Tx–Graphene Oxide Membranes during Pressure-Driven Filtration: Comparison with Graphene Oxide and MXenes
Kyoung Min Kang, Dae Woo Kim, Chang E. Ren, Kyeong Min Cho, Seon Joon Kim, Jung Hoon Choi, Yoon Tae Nam, Yury Gogotsi, Hee‐Tae Jung
SJR Q1ACS Applied Materials & Interfaces

In this work, we prepared 90 nm thick Ti 3 C 2 T x –graphene oxide (GO) membranes laminated on a porous support by mixing GO with Ti 3 C 2 T x . This process was chosen to prevent the penetration of target molecules through inter-edge defects or voids with poor packing. The lattice period of the prepared membrane was 14.28 Å, as being swelled with water, resulting in an effective interlayer spacing of around 5 Å, which corresponds to two layers of water molecules. The composite membranes effecti

Materials ChemistryMaterials Science
11
Article|251 citations·2019
Enhanced Selectivity of MXene Gas Sensors through Metal Ion Intercalation: In Situ X-ray Diffraction Study
Hyeong‐Jun Koh, Seon Joon Kim, Kathleen Maleski, Soo‐Yeon Cho, Yong-Jae Kim, Chi Won Ahn, Yury Gogotsi, Hee‐Tae Jung
SJR Q1ACS Sensors

Gas molecules are known to interact with two-dimensional (2D) materials through surface adsorption where the adsorption-induced charge transfer governs the chemiresistive sensing of various gases. Recently, titanium carbide (Ti3C2Tx) MXene emerged as a promising sensing channel showing the highest sensitivity among 2D materials and unique gas selectivity. However, unlike conventional 2D materials, MXenes show metallic conductivity and contain interlayer water, implying that gas molecules will li

Materials ChemistryMaterials Science
12
Article|235 citations·2011
Direct visualization of large-area graphene domains and boundaries by optical birefringency
Dae Woo Kim, Yun Ho Kim, Hyeon Su Jeong, Hee‐Tae Jung
SJR Q1Nature Nanotechnology
Materials ChemistryMaterials Science
13
Article|231 citations·2017
Amine-Functionalized Graphene/CdS Composite for Photocatalytic Reduction of CO2
Kyeong Min Cho, Kyung Hwan Kim, Kangho Park, Chansol Kim, Sungtak Kim, Ahmed AlSaggaf, Issam Gereige, Hee‐Tae Jung
SJR Q1ACS Catalysis

This study provides a significant enhancement in CO 2 photoconversion efficiency by the functionalization of a reduced graphene oxide/cadmium sulfide composite (rGO/CdS) with amine. The amine-functionalized graphene/CdS composite (AG/CdS) was obtained in two steps. First, graphene oxide (GO) was selectively deposited via electrostatic interaction with CdS nanoparticles modified with 3-aminopropyltriethoxysilane. Subsequently, ethylenediamine (NH 2 C 2 H 4 NH 2 ) was grafted by an N, N ′-dicycloh

Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|221 citations·2018
Z-scheme Photocatalytic CO2 Conversion on Three-Dimensional BiVO4/Carbon-Coated Cu2O Nanowire Arrays under Visible Light
Chansol Kim, Kyeong Min Cho, Ahmed AlSaggaf, Issam Gereige, Hee‐Tae Jung
SJR Q1ACS Catalysis

Cuprous oxide (Cu2O) is one of the most promising materials for photoreduction of CO2 because of its high conduction band and small band gap, which enable the production of high-potential electrons under visible-light irradiation. However, it is difficult to reduce the CO2 using a Cu2O-based photocatalyst due to fast charge recombination and low photostability. In this work, we enhanced the photocatalytic CO2 conversion activity of Cu2O by hybridization of Cu2O NWAs, carbon layers, and BiVO4 nan

Renewable Energy, Sustainability and the EnvironmentEnergy
15
Article|204 citations·2017
An Ultrasensitive, Visco‐Poroelastic Artificial Mechanotransducer Skin Inspired by Piezo2 Protein in Mammalian Merkel Cells
Ming Jin, Sangsik Park, Young‐Hoon Lee, Ji Hye Lee, Junho Chung, Joo Sung Kim, Jong‐Seon Kim, So Young Kim, Eunsong Jee, Dae Woo Kim, Jae Woo Chung, Seung Geol Lee
SJR Q1Advanced Materials

An artificial ionic mechanotransducer skin with an unprecedented sensitivity over a wide spectrum of pressure by fabricating visco-poroelastic nanochannels and microstructured features, directly mimicking the physiological tactile sensing mechanism of Piezo2 protein is demonstrated. This capability enables voice identification, health monitoring, daily pressure measurements, and even measurements of a heavy weight beyond capabilities of human skin.

Biomedical EngineeringEngineering

Research Areas

Materials ChemistryElectrical and Electronic EngineeringBiomedical EngineeringElectronic, Optical and Magnetic MaterialsPolymers and PlasticsRenewable Energy, Sustainability and the Environment

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