Skip to main content

Suk Jun Kwon

Sungkyunkwan University · Engineering

About the Lab

Professor Suk Jun Kwon's research lab specializes in advanced materials science with a focus on perovskite optoelectronics, nanomaterials for energy storage, and functional nanomaterials for secure authentication. The lab investigates facet-dependent surface passivation in perovskite films to enhance stability and efficiency in solar cells, develops nanostructured carbon materials for high-capacity alkali-metal ion batteries, and pioneers novel physical unclonable functions using molecular self-assembly for hardware security. Their work bridges fundamental surface science with practical applications in renewable energy and cybersecurity.

perovskite solar cellsnanomaterialsenergy storagephysical unclonable functionssurface passivation

Research Overview

Papers
87
Total Citations
2,970
Papers (5y)
42
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
42total
2022
2023
2024
2025
2026
Citations per year (5y)
1,643total
20222023202420252026

Selected Papers

15
1
Article|392 citations·2023
Unveiling facet-dependent degradation and facet engineering for stable perovskite solar cells
Chunqing Ma, Felix T. Eickemeyer, Sun-Ho Lee, Dong‐Ho Kang, Seok Joon Kwon, Michaël Grätzel, Nam‐Gyu Park
SJR Q1ScienceOA

A myriad of studies and strategies have already been devoted to improving the stability of perovskite films; however, the role of the different perovskite crystal facets in stability is still unknown. Here, we reveal the underlying mechanisms of facet-dependent degradation of formamidinium lead iodide (FAPbI 3 ) films. We show that the (100) facet is substantially more vulnerable to moisture-induced degradation than the (111) facet. With combined experimental and theoretical studies, the degrada

Electrical and Electronic EngineeringEngineering
2
Article|289 citations·2022
Photovoltaically top-performing perovskite crystal facets
Chunqing Ma, Min‐Chul Kang, Sun‐Ho Lee, Seok Joon Kwon, Hyun‐Woo Cha, Cheol‐Woong Yang, Nam‐Gyu Park
SJR Q1Joule
Electrical and Electronic EngineeringEngineering
3
Article|157 citations·2022
Nanoscale physical unclonable function labels based on block copolymer self-assembly
Jang Hwan Kim, Suwan Jeon, Jae Hyun In, Seonho Nam, Hyeong Min Jin, Kyu Hyo Han, Geon Gug Yang, Hee Jae Choi, Kyung Min Kim, Jonghwa Shin, Seung‐Woo Son, Seok Joon Kwon
SJR Q1Nature ElectronicsOA

Abstract Hardware-based cryptography that exploits physical unclonable functions is required for the secure identification and authentication of devices in the Internet of Things. However, physical unclonable functions are typically based on anticounterfeit identifiers created from randomized microscale patterns or non-predictable fluctuations of electrical response in semiconductor devices, and the validation of an encrypted signature relies on a single-purpose method such as microscopy or elec

Hardware and ArchitectureComputer Science
4
Article|111 citations·2023
Facet-Dependent Passivation for Efficient Perovskite Solar Cells
Chunqing Ma, Min‐Chul Kang, Sun-Ho Lee, Yalan Zhang, Dong‐Ho Kang, Wenxin Yang, Pin Zhao, Sang‐Woo Kim, Seok Joon Kwon, Cheol‐Woong Yang, Yang Yang, Nam‐Gyu Park
SJR Q1Journal of the American Chemical SocietyOA

Understanding the interplay between the surface structure and the passivation materials and their effects associated with surface structure modification is of fundamental importance; however, it remains an unsolved problem in the perovskite passivation field. Here, we report a surface passivation principle for efficient perovskite solar cells via a facet-dependent passivation phenomenon. The passivation process selectively occurs on facets, which is observed with various post-treatment materials

Electrical and Electronic EngineeringEngineering
5
Article|108 citations·2020
High Capacity Adsorption—Dominated Potassium and Sodium Ion Storage in Activated Crumpled Graphene
Byeongyong Lee, Myeongjin Kim, Sun‐Kyung Kim, Jagjit Nanda, Seok Joon Kwon, Hee Dong Jang, David Mitlin, Seung Woo Lee
SJR Q1Advanced Energy MaterialsOA

Abstract Structurally and chemically defective activated‐crumbled graphene (A‐CG) is employed to achieve unique synergy of large reversible potassium (K) and sodium (Na) ion storage capacity with fast charging and extended cyclability. A‐CG synthesis consists of low temperature spraying of graphene oxide slurry, followed by partial reduction annealing and air activation. For K storage, the reversible capacities are 340 mAh g −1 at 0.04 A g −1 , 261 mAh g −1 at 0.5 A g −1 , and 210 mAh g −1 at 2

Electrical and Electronic EngineeringEngineering
6
Article|101 citations·2005
Wrinkling of a sol-gel-derived thin film
Seok Joon Kwon, Jae-Hwan Park, Jae‐Gwan Park
SJR Q2Physical Review E

We report on the wrinkle formation in a thin film produced by the sol-gel method. Through the relaxation of stress, which results from the removal of the solvent during the drying process, an isotropic wavy pattern is generated in the form of skeletal branches. The patterns have a dominant wavelength satisfying a relationship of three-fourths order of thickness. Densification of the gelated film is enhanced by an increase in the volumetric strain caused by the evaporation of the remaining solven

Mechanical EngineeringEngineering
7
Article|75 citations·2020
Omnidirectional, Broadband Light Absorption in a Hierarchical Nanoturf Membrane for an Advanced Solar‐Vapor Generator
Jong Uk Kim, Seung‐Ji Kang, Sori Lee, Jehyung Ok, Yong‐Jae Kim, Seung Hun Roh, Haeleen Hong, Jung Kyu Kim, Heeyeop Chae, Seok Joon Kwon, Tae‐il Kim
SJR Q1Advanced Functional Materials

Abstract Solar‐thermal materials have been intensively studied in the context of production and localization of thermal energy, targeting an industry level application. Although photonic and optical strategies for enhancing light absorption have increased the efficiency of photo excitation/conversion into thermal energy, most of them have several limitations such as large area fabrication, thermal stability and broadband/omnidirectional light absorption. In this study, a gold‐coated hierarchical

Renewable Energy, Sustainability and the EnvironmentEnergy
8
Article|73 citations·2016
A Plasmonic Platform with Disordered Array of Metal Nanoparticles for Three‐Order Enhanced Upconversion Luminescence and Highly Sensitive Near‐Infrared Photodetector
Seok Joon Kwon, Gi Yong Lee, Kinam Jung, Ho Seong Jang, Joon‐Suh Park, Honglyoul Ju, Il Ki Han, Hyungduk Ko
SJR Q1Advanced Materials

Three-order enhanced upconversion luminescence from upconversion nanoparticles is suggested by way of a promising platform utilizing a disordered array of plasmonic metal nanoparticles. Its application toward highly sensitive NIR photodetectors is discussed.

Materials ChemistryMaterials Science
9
Article|67 citations·2015
Simultaneous Enhancement of Upconversion and Downshifting Luminescence via Plasmonic Structure
Kyu‐Tae Lee, Jong‐Hyun Park, Seok Joon Kwon, Hyun-Keun Kwon, Jihoon Kyhm, Kyung-Won Kwak, Ho Seong Jang, Su Yeon Kim, Joon Soo Han, Sung Hwan Lee, Dong-Hun Shin, Hyungduk Ko
SJR Q1Nano Letters

We describe a metal nanodisk-insulator-metal (MIM) structure that enhances lanthanide-based upconversion (UC) and downshifting (DS) simultaneously. The structure was fabricated using a nanotransfer printing method that facilitates large-area applications of nanostructures for optoelectronic devices. The proposed MIM structure is a promising way to harness the entire solar spectrum by converting both ultraviolet and near-infrared to visible light concurrently through resonant-mode excitation. The

Materials ChemistryMaterials Science
10
Article|44 citations·2018
A Plesiohedral Cellular Network of Graphene Bubbles for Ultralight, Strong, and Superelastic Materials
Seon Ju Yeo, Min Jun Oh, Hyun Min Jun, Minhwan Lee, Jung Gun Bae, Yeseul Kim, Kyung Jin Park, Seungwoo Lee, Daeyeon Lee, Byung Mook Weon, Won Bo Lee, Seok Joon Kwon
SJR Q1Advanced Materials

Abstract Advanced materials with low density and high strength impose transformative impacts in the construction, aerospace, and automobile industries. These materials can be realized by assembling well‐designed modular building units (BUs) into interconnected structures. This study uses a hierarchical design strategy to demonstrate a new class of carbon‐based, ultralight, strong, and even superelastic closed‐cellular network structures. Here, the BUs are prepared by a multiscale design approach

Materials ChemistryMaterials Science
11
Article|40 citations·2022
Synthesis of MAPbBr3‐Polymer Composite Films by Photolysis of DMF: Toward Transparent and Flexible Optical Physical Unclonable Functions (PUFs) with Hierarchical Multilevel Complexity
Duong Nguyen Minh, Lan Anh Thi Nguyen, Quynh H. Nguyen, Thanh Van Vu, Jin‐Woo Choi, Sangwon Eom, Seok Joon Kwon, Youngjong Kang
SJR Q1Advanced Materials

Abstract Physical entities with inherent randomness have been investigated as anti‐counterfeiting labels based on physical unclonable functions (PUFs). Herein, a transparent and flexible optical PUF label associated with multilevel complexity is demonstrated by taking advantage of the optical properties of hierarchical morphologies of the composite film composed of metal halide perovskite nanoparticles (MAPbBr 3 NPs) and the intrinsic spinodal‐decomposition‐like phase separation of polymer blend

Biomedical EngineeringEngineering
12
Article|39 citations·2015
Upconversion luminescence enhancement in plasmonic architecture with random assembly of metal nanodomes
Gi Yong Lee, Kinam Jung, Ho Seong Jang, Jihoon Kyhm, Il Ki Han, Byoungnam Park, Honglyoul Ju, Seok Joon Kwon, Hyungduk Ko
SJR Q1Nanoscale

We report an experimental study on the highly enhanced upconversion luminescence (UCL) of β-NaYF4:Yb(3+)/Er(3+) nanocrystals (NCs) in a plasmonic architecture. For the architecture, we designed a thin film device composed of a thin layer of NCs capped with an upper layer of a plasmonic nanodome array (pNDA) and lower substrate of a back reflector (BR). Compared to the UCL intensity observed in a glass reference substrate, the designed plasmonic architecture exhibits distinctively strong luminesc

Materials ChemistryMaterials Science
13
Article|38 citations·2021
Simultaneously intensified plasmonic and charge transfer effects in surface enhanced Raman scattering sensors using an MXene-blanketed Au nanoparticle assembly
Seong Soo Yoo, Jeongwon Ho, Dong‐In Shin, Minjun Kim, Sung Hwan Hong, Jun Hyuk Lee, Hyeon Jun Jeong, Mun Seok Jeong, Gi‐Ra Yi, Seok Joon Kwon, Pil J. Yoo
SJR Q1Journal of Materials Chemistry A

MXene-blanketed Au nanoparticle assembly with energy level alignment effectively facilitates the charge transfer effect while securing the electromagnetic effect by guiding the analyte near to hotspot center for surface enhanced Raman scattering.

Electronic, Optical and Magnetic MaterialsMaterials Science
14
Article|33 citations·2023
Planar Spin Glass with Topologically Protected Mazes in the Liquid Crystal Targeting for Reconfigurable Micro Security Media
Geonhyeong Park, Yun‐Seok Choi, Seok Joon Kwon, Dong Ki Yoon
SJR Q1Advanced MaterialsOA

The planar spin glass pattern is widely known for its inherent randomness, resulting from the geometrical frustration. As such, developing physical unclonable functions (PUFs)-which operate with device randomness-with planar spin glass patterns is a promising candidate for an advanced security systems in the upcoming digitalized society. Despite their inherent randomness, traditional magnetic spin glass patterns pose considerable obstacles in detection, making it challenging to achieve authentic

Electrical and Electronic EngineeringEngineering
15
Article|33 citations·2019
Shear-solvo defect annihilation of diblock copolymer thin films over a large area
Ye Chan Kim, Tae Joo Shin, Su‐Mi Hur, Seok Joon Kwon, So Youn Kim
SJR Q1Science AdvancesOA

Achieving defect-free block copolymer (BCP) nanopatterns with a long-ranged orientation over a large area remains a persistent challenge, impeding the successful and widespread application of BCP self-assembly. Here, we demonstrate a new experimental strategy for defect annihilation while conserving structural order and enhancing uniformity of nanopatterns. Sequential shear alignment and solvent vapor annealing generate perfectly aligned nanopatterns with a low defect density over centimeter-sca

Materials ChemistryMaterials Science

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryBiomedical EngineeringMechanical EngineeringRenewable Energy, Sustainability and the EnvironmentElectronic, Optical and Magnetic Materials

Dive deeper into Suk Jun Kwon's research on Nubint

Open this lab's papers in the app to read with AI, summarize, and cite in your writing.