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Kang, Keehoon

Seoul National University · Engineering

About the Lab

Professor Kang Keehoon's research lab specializes in the development and fundamental understanding of advanced 2D and hybrid semiconductor materials for next-generation electronic and optoelectronic devices. The lab focuses on molecular doping, interface engineering, and defect control in transition metal dichalcogenides (TMDCs) and perovskite materials to enhance charge transport and device performance. Key research directions include resistive memory devices based on organo-metal halide perovskites, high-gain photodetectors using monolayer MoS₂, and non-invasive structural characterization of 2D perovskites via solid-state NMR. The lab emphasizes materials design for low-power, high-performance nanoelectronics and integrated optoelectronic systems.

2D semiconductorsmolecular dopingresistive memoryperovskite optoelectronicsinterface engineering

Research Overview

Papers
91
Total Citations
2,581
Papers (5y)
44
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
44total
2022
2023
2024
2025
2026
Citations per year (5y)
836total
20222023202420252026

Selected Papers

15
1
Article|449 citations·2016
2D coherent charge transport in highly ordered conducting polymers doped by solid state diffusion
Keehoon Kang, Shun Watanabe, Katharina Broch, Alessandro Sepe, Adam R. Brown, Iyad Nasrallah, Mark Nikolka, Zhuping Fei, Martin Heeney, Daisuke Matsumoto, Kazuhiro Marumoto, Hisaaki Tanaka
SJR Q1Nature Materials
Polymers and PlasticsMaterials Science
2
Article|167 citations·2019
High‐Performance Solution‐Processed Organo‐Metal Halide Perovskite Unipolar Resistive Memory Devices in a Cross‐Bar Array Structure
Keehoon Kang, Heebeom Ahn, Younggul Song, Woo‐Cheol Lee, Junwoo Kim, Young‐Rok Kim, Daekyoung Yoo, Takhee Lee
SJR Q1Advanced Materials

Abstract Resistive random access memories can potentially open a niche area in memory technology applications by combining the advantages of the long endurance of dynamic random‐access memory and the long retention time of flash memories. Recently, resistive memory devices based on organo‐metal halide perovskite materials have demonstrated outstanding memory properties, such as a low‐voltage operation and a high ON/OFF ratio; such properties are essential requirements for low power consumption i

Electrical and Electronic EngineeringEngineering
3
Article|90 citations·2019
Enhanced Charge Injection Properties of Organic Field‐Effect Transistor by Molecular Implantation Doping
Youngrok Kim, Seungjun Chung, Kyungjune Cho, David J. Harkin, Wang‐Taek Hwang, Daekyoung Yoo, Jae‐Keun Kim, Woo‐Cheol Lee, Younggul Song, Heebeom Ahn, Yongtaek Hong, Henning Sirringhaus
SJR Q1Advanced Materials

Abstract Organic semiconductors (OSCs) have been widely studied due to their merits such as mechanical flexibility, solution processability, and large‐area fabrication. However, OSC devices still have to overcome contact resistance issues for better performances. Because of the Schottky contact at the metal–OSC interfaces, a non‐ideal transfer curve feature often appears in the low‐drain voltage region. To improve the contact properties of OSCs, there have been several methods reported, includin

Electrical and Electronic EngineeringEngineering
4
Article|78 citations·2022
Reduced dopant-induced scattering in remote charge-transfer-doped MoS 2 field-effect transistors
Juntae Jang, Jae‐Keun Kim, Jae-Keun Kim, Jiwon Shin, Jaeyoung Kim, Jaeyoung Kim, Kyeong‐Yoon Baek, Jaehyoung Park, Seung Min Park, Young Duck Kim, S. Parkin, Keehoon Kang
SJR Q1Science AdvancesOA

Efficient doping for modulating electrical properties of two-dimensional (2D) transition metal dichalcogenide (TMDC) semiconductors is essential for meeting the versatile requirements for future electronic and optoelectronic devices. Because doping of semiconductors, including TMDCs, typically involves generation of charged dopants that hinder charge transport, tackling Coulomb scattering induced by the externally introduced dopants remains a key challenge in achieving ultrahigh mobility 2D semi

Materials ChemistryMaterials Science
5
Article|70 citations·2021
Ultrasensitive Photodetection in MoS2 Avalanche Phototransistors
Junseok Seo, Jin Hee Lee, Jinsu Pak, Kyungjune Cho, Jae‐Keun Kim, Jae‐Young Kim, Juntae Jang, Heebeom Ahn, Seong Chu Lim, Seungjun Chung, Keehoon Kang, Takhee Lee
SJR Q1Advanced ScienceOA

Abstract Recently, there have been numerous studies on utilizing surface treatments or photosensitizing layers to improve photodetectors based on 2D materials. Meanwhile, avalanche breakdown phenomenon has provided an ultimate high‐gain route toward photodetection in the form of single‐photon detectors. Here, the authors report ultrasensitive avalanche phototransistors based on monolayer MoS 2 synthesized by chemical vapor deposition. A lower critical field for the electrical breakdown under ill

Materials ChemistryMaterials Science
6
Article|58 citations·2020
Layer-by-Layer Structural Identification of 2D Ruddlesden–Popper Hybrid Lead Iodide Perovskites by Solid-State NMR Spectroscopy
Jeongjae Lee, Woo‐Cheol Lee, Keehoon Kang, Takhee Lee, Sung Keun Lee
SJR Q1Chemistry of Materials

Application of two-dimensional (2D) organic–inorganic hybrid halide perovskites in optoelectronic devices requires a detailed understanding of the local structural features including the Pb–I bonding in the 2D layers and the organic–inorganic interaction between the organic spacer molecules and the perovskite layer. In this study, we show that 1H and 207Pb solid-state nuclear magnetic resonance (NMR) spectroscopy can serve as a noninvasive and complementary technique to probe the local structura

Electrical and Electronic EngineeringEngineering
7
Article|53 citations·2021
Molecular Dopant‐Dependent Charge Transport in Surface‐Charge‐Transfer‐Doped Tungsten Diselenide Field Effect Transistors
Jae‐Keun Kim, Kyungjune Cho, Juntae Jang, Kyeong‐Yoon Baek, Jehyun Kim, Junseok Seo, Minwoo Song, Jiwon Shin, Jae‐Young Kim, S. Parkin, Jung‐Hoon Lee, Keehoon Kang
SJR Q1Advanced Materials

Abstract The controllability of carrier density and major carrier type of transition metal dichalcogenides(TMDCs) is critical for electronic and optoelectronic device applications. To utilize doping in TMDC devices, it is important to understand the role of dopants in charge transport properties of TMDCs. Here, the effects of molecular doping on the charge transport properties of tungsten diselenide (WSe 2 ) are investigated using three p‐type molecular dopants, 2,3,5,6‐tetrafluoro‐7,7,8,8‐tetra

Materials ChemistryMaterials Science
8
Article|53 citations·2019
Investigation of the thermoelectric response in conducting polymers doped by solid-state diffusion
Keehoon Kang, Sam Schott, Deepak Venkateshvaran, Katharina Broch, Guillaume Schweicher, Damien G. Harkin, Cameron Jellett, Christian B. Nielsen, Iain McCulloch, Henning Sirringhaus
SJR Q1Materials Today PhysicsOA
Materials ChemistryMaterials Science
9
Article|51 citations·2020
Highly Stable Contact Doping in Organic Field Effect Transistors by Dopant‐Blockade Method
Youngrok Kim, Katharina Broch, Woo‐Cheol Lee, Heebeom Ahn, Jonghoon Lee, Daekyoung Yoo, Junwoo Kim, Seungjun Chung, Henning Sirringhaus, Keehoon Kang, Takhee Lee
SJR Q1Advanced Functional MaterialsOA

Abstract In organic device applications, a high contact resistance between metal electrodes and organic semiconductors prevents an efficient charge injection and extraction, which fundamentally limits the device performance. Recently, various contact doping methods have been reported as an effective way to resolve the contact resistance problem. However, the contact doping has not been explored extensively in organic field effect transistors (OFETs) due to dopant diffusion problem, which signifi

Electrical and Electronic EngineeringEngineering
10
Article|40 citations·2018
Investigation of Time–Dependent Resistive Switching Behaviors of Unipolar Nonvolatile Organic Memory Devices
Woo‐Cheol Lee, Young‐Rok Kim, Younggul Song, Kyungjune Cho, Daekyoung Yoo, Heebeom Ahn, Keehoon Kang, Takhee Lee
SJR Q1Advanced Functional Materials

Abstract Organic resistive memory devices are one of the promising next‐generation data storage technologies which can potentially enable low‐cost printable and flexible memory devices. Despite a substantial development of the field, the mechanism of the resistive switching phenomenon in organic resistive memory devices has not been clearly understood. Here, the time–dependent current behavior of unipolar organic resistive memory devices under a constant voltage stress to investigate the turn‐on

Electrical and Electronic EngineeringEngineering
11
Article|32 citations·2022
Channel-Length-Modulated Avalanche Multiplication in Ambipolar WSe2 Field-Effect Transistors
Jae-Young Kim, Kyungjune Cho, Jinsu Pak, Woo‐Cheol Lee, Junseok Seo, Jae‐Keun Kim, Jiwon Shin, Juntae Jang, Kyeong‐Yoon Baek, Jonghoon Lee, Seungjun Chung, Keehoon Kang
SJR Q1ACS Nano

Recently there has been growing interest in avalanche multiplication in two-dimensional (2D) materials and device applications such as avalanche photodetectors and transistors. Previous studies have mainly utilized unipolar semiconductors as the active material and focused on developing high-performance devices. However, fundamental analysis of the multiplication process, particularly in ambipolar materials, is required to establish high-performance electronic devices and emerging architectures.

Materials ChemistryMaterials Science
12
Article|30 citations·2024
Enhanced Photodetection Performance of an In Situ Core/Shell Perovskite-MoS2 Phototransistor
Jinwoo Sim, Sunggyu Ryoo, Joo Sung Kim, Juntae Jang, Heebeom Ahn, Donguk Kim, Joonha Jung, Taehyun Kong, Hyeonmin Choi, Yun Seog Lee, Tae‐Woo Lee, Kyungjune Cho
SJR Q1ACS Nano

While two-dimensional transition metal dichalcogenides (TMDCs)-based photodetectors offer prospects for high integration density and flexibility, their thinness poses a challenge regarding low light absorption, impacting photodetection sensitivity. Although the integration of TMDCs with metal halide perovskite nanocrystals (PNCs) has been known to be promising for photodetection with a high absorption coefficient of PNCs, the low charge mobility of PNCs delays efficient photocarrier injection in

Electrical and Electronic EngineeringEngineering
13
Article|27 citations·2023
Molecular doping principles in organic electronics: fundamentals and recent progress
Tae‐Hoon Kim, Ji Hwan Kim, Keehoon Kang
SJR Q3Japanese Journal of Applied PhysicsOA

Abstract Molecular doping of organic semiconductors has been widely utilized to modulate the charge transport characteristics and charge carrier concentration of active materials for organic electronics such as organic photovoltaics, organic light-emitting diodes, and organic field-effect transistors. For the application of molecular doping to organic electronics, the fundamentals of molecular doping should be thoroughly understood in terms of doping mechanism, host and dopant materials, doping

Electrical and Electronic EngineeringEngineering
14
Article|20 citations·2020
Controllable deposition of organic metal halide perovskite films with wafer-scale uniformity by single source flash evaporation
Woo‐Cheol Lee, Jonghoon Lee, Hyeon-Dong Lee, Junwoo Kim, Heebeom Ahn, Youngrok Kim, Daekyoung Yoo, Jeongjae Lee, Tae‐Woo Lee, Keehoon Kang, Takhee Lee, Takhee Lee
SJR Q1Scientific ReportsOA

Abstract Conventional solution-processing techniques such as the spin-coating method have been used successfully to reveal excellent properties of organic–inorganic halide perovskites (OHPs) for optoelectronic devices such as solar cell and light-emitting diode, but it is essential to explore other deposition techniques compatible with large-scale production. Single-source flash evaporation technique, in which a single source of materials of interest is rapidly heated to be deposited in a few se

Electrical and Electronic EngineeringEngineering
15
Review|19 citations·2023
Unlocking the potential of metal halide perovskite thermoelectrics through electrical doping: A critical review
Yong-Jin Kim, Hyeonmin Choi, Jonghoon Lee, Young‐Kwang Jung, Joonha Jung, J. Cho, Takhee Lee, Keehoon Kang
SJR Q1EcoMatOA

Abstract Over the past decade, metal halide perovskites (MHPs) have received great attention, triggered by the tremendous success of their record‐breaking power conversion efficiency values in solar cells. Recently, there have been significant interests in fully utilizing their unique properties by exploring other device applications including thermoelectrics, which is promising due to their ultralow thermal conductivity and high mobility relative to their competitors among solution‐processable

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringPolymers and PlasticsMaterials ChemistryAtomic and Molecular Physics, and OpticsBiomedical EngineeringAerospace Engineering

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