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Sae-Hee Cho

Sungkyunkwan University · 工学

研究室紹介

Professor Sae-Hee Cho's research lab specializes in advanced materials for next-generation optoelectronic and energy conversion devices, with a strong focus on solution-processed nanomaterials and hybrid heterostructures. Key research directions include the design and integration of low-dimensional materials—such as ZnO nanocrystals, MXenes, graphene, and π-conjugated nanowires—into flexible and efficient organic photovoltaics and multivalued logic devices. The lab also investigates interfacial engineering and molecular-level interactions in aqueous zinc-ion batteries, leveraging stereochemical effects and dynamic solvation environments to enhance ion transport and electrode stability. Their work bridges fundamental materials science with practical device applications, emphasizing scalable, low-temperature processing techniques.

nanomaterialsorganic photovoltaicsenergy storage2D materialsinterfacial engineering

Research Overview

Papers
117
Total Citations
6,798
Papers (5y)
47
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
47total
2022
2023
2024
2025
2026
Citations per year (5y)
743total
20222023202420252026

Selected Papers

15
1
Article|127 citations·2011
High Performance Organic Photovoltaic Cells Using Polymer‐Hybridized ZnO Nanocrystals as a Cathode Interlayer
Sae Byeok Jo, Ji Hwang Lee, Myungsun Sim, Min Gyu Kim, Jong Hwan Park, Yeong Suk Choi, Yungi Kim, Soo‐Ghang Ihn, Kilwon Cho
SJR Q1Advanced Energy Materials

Abstract Solution‐processed zinc oxide nanocrystals (ZnO NCs) hybridized with insulating poly(ethylene glycol) (PEG) are introduced as a cathode interlayer in bulk heterojunction organic photovoltaic cells based on poly(3‐hexylthiophene) (P3HT):(6,6)‐phenyl‐C61 butyric acid methyl ester (PC 61 BM) blends. The performance of devices with ZnO‐PEG interlayers exhibit an excellent maximum power conversion efficiency (PCE) of 4.4% with a fill factor (FF) of 0.69 under optimized conditions. This enhan

Electrical and Electronic EngineeringEngineering
2
Review|117 citations·2021
Recent Advances on Multivalued Logic Gates: A Materials Perspective
Sae Byeok Jo, Joohoon Kang, Jeong Ho Cho
SJR Q1Advanced ScienceOA

The recent advancements in multivalued logic gates represent a rapid paradigm shift in semiconductor technology toward a new era of hyper Moore's law. Particularly, the significant evolution of materials is guiding multivalued logic systems toward a breakthrough gradually, whereby they are transcending the limits of conventional binary logic systems in terms of all the essential figures of merit, i.e., power dissipation, operating speed, circuit complexity, and, of course, the level of the integ

Electrical and Electronic EngineeringEngineering
3
Article|83 citations·2015
Boosting Photon Harvesting in Organic Solar Cells with Highly Oriented Molecular Crystals via Graphene–Organic Heterointerface
Sae Byeok Jo, Hyun Ho Kim, Hansol Lee, Boseok Kang, Seongkyu Lee, Myungsun Sim, Min Gyu Kim, Wi Hyoung Lee, Kilwon Cho
SJR Q1ACS Nano

Photon harvesting in organic solar cells is highly dependent on the anisotropic nature of the optoelectronic properties of photoactive materials. Here, we demonstrate an efficient approach to dramatically enhance photon harvesting in planar heterojunction solar cells by using a graphene-organic heterointerface. A large area, residue-free monolayer graphene is inserted at anode interface to serve as an atomically thin epitaxial template for growing highly orientated pentacene crystals with lying-

Electrical and Electronic EngineeringEngineering
4
Article|71 citations·2022
Comb-type polymer-hybridized MXene nanosheets dispersible in arbitrary polar, nonpolar, and ionic solvents
Gyeong Seok Park, Dong Hae Ho, Benzheng Lyu, Seung‐Bae Jeon, Du Yeol Ryu, Dae Woo Kim, Namkon Lee, Sung‐Wook Kim, Young Jae Song, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Science AdvancesOA

Solution-based processing of two-dimensional (2D) nanomaterials is highly desirable, especially for the low-temperature large-area fabrication of flexible multifunctional devices. MXenes, an emerging family of 2D materials composed of transition metal carbides, carbonitrides, or nitrides, provide excellent electrical and electrochemical properties through aqueous processing. Here, we further expand the horizon of MXene processing by introducing a polymeric superdispersant for MXene nanosheets. S

Materials ChemistryMaterials Science
5
Article|68 citations·2012
Polymer blends with semiconducting nanowires for organic electronics
Sae Byeok Jo, Wi Hyoung Lee, Longzhen Qiu, Kilwon Cho
Journal of Materials Chemistry

This article reviews the recent advances in organic electronics based on polymer blends with one-dimensional (1D) nanowires (NWs) of π-conjugated polymers. Self-assembled polymer semiconducting NWs are fascinating building blocks for their directional extension of inter- and intramolecular π-conjugation. This extensive conjugation provides unique electrical and optical properties that benefit applications in organic electronic devices. Outstanding performances are particularly expected from blen

Electrical and Electronic EngineeringEngineering
6
Article|39 citations·2025
Stereoisomerism of multi-functional electrolyte additives for initially anodeless aqueous zinc metal batteries
Shengyang Huang, Hao Fu, Hyun Min Kwon, Min Sung Kim, Jundong Zhang, Jun Lü, Jun Su Kim, Gun Jang, Dong Hyun Min, Won Il Kim, Guanyao Wang, Wenwu Li
SJR Q1Nature CommunicationsOA

Stereoisomerism, arising from the distinctive spatial arrangements of atoms despite identical molecular formulae, often displays different chemical reactivities. Herein, we demonstrate how geometric isomerism of multifunctional electrolyte additives affects aqueous zinc metal batteries. Inspired by natural bacteria, we compared trans-butenedioic acid (fumaric acid) and its cis-isomer (maleic acid), revealing different hydrogen bonding dynamics and solvation environments, as confirmed by femtosec

Electrical and Electronic EngineeringEngineering
7
Article|32 citations·2012
Large-area graphene synthesis and its application to interface-engineered field effect transistors
Sae Byeok Jo, Jaesung Park, Wi Hyoung Lee, Kilwon Cho, Byung Hee Hong
SJR Q2Solid State Communications
Materials ChemistryMaterials Science
8
Article|27 citations·2022
Monolithic Tandem Vertical Electrochemical Transistors for Printed Multi‐Valued Logic
Dong Un Lim, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Advanced Materials

Organic electrochemical transistors (OECTs) have recently emerged as a feasible candidate to realize the next generation of printable electronics. Especially, their chemical versatility and the unique redox-based operating principle have provided new possibilities in high-functioning logic circuitry beyond the traditional binary Boolean logic. Here, a simple strategy to electrochemically realize monolithic multi-valued logic transistors is presented, which is one of the most promising branches o

Polymers and PlasticsMaterials Science
9
Article|27 citations·2015
Carrier‐Selectivity‐Dependent Charge Recombination Dynamics in Organic Photovoltaic Cells with a Ferroelectric Blend Interlayer
Sae Byeok Jo, Min Gyu Kim, Dong Hun Sin, Jaewon Lee, Heung Gyu Kim, Hyomin Ko, Kilwon Cho
SJR Q1Advanced Energy Materials

Interfacial energetics determines the performance of organic photovoltaic (OPV) cells based on a thin film of organic semiconductor blends. Here, an approach to modulating the “carrier selectivity” at the charge collecting interfaces and the consequent variations in the nongeminate charge carrier recombination dynamics in OPV devices are demonstrated. A ferroelectric blend interfacial layer composed of a solution‐processable ferroelectric poly­mer and a wide bandgap semiconductor is introduced a

Electrical and Electronic EngineeringEngineering
10
Article|21 citations·2020
Percolation-Limited Dual Charge Transport in Vertical p–n Heterojunction Schottky Barrier Transistors
Dong Un Lim, Seongchan Kim, Young Jin Choi, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Nano Letters

Solution-processed, high-speed, and polarity-selective organic vertical Schottky barrier (SB) transistors and logic gates are presented. The organic layer, which is a bulk heterojunction (BHJ) composed of PBDB-T and PC<sub>71</sub>BM, is employed to simultaneously realize vertical electron and hole transports through the separate p-channel and n-channel. The gate-modulated graphene work functions enable broad modulation of SB heights at both the graphene-PBDB-T and graphene-PC<sub>71</sub>BM het

Materials ChemistryMaterials Science
11
Article|19 citations·2023
High‐Speed Operation of Electrochemical Logic Circuits Depending on 3D Construction of Transistor Architectures
Jung Woo Moon, Dong Un Lim, Young No Kim, Jung Hyun Kim, Jin Hyeon Kim, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Advanced Functional Materials

Abstract The emergence of organic electrochemical transistors (OECTs) has opened a new era of printable electronics and bioelectronics, due to their unique advantages including innately superior transconductance and biocompatibility. Despite the foreseeable advancements available from their further implementations in fundamental logic circuitry, however, insufficient operation speeds and short compatibilities to scaling‐down have so far hindered advanced integrations other than biosensing and bi

Polymers and PlasticsMaterials Science
12
Article|19 citations·2022
A general fruit acid chelation route for eco-friendly and ambient 3D printing of metals
Soo Young Cho, Dong Hae Ho, Yoon Young Choi, Soomook Lim, Sungjoo Lee, Ji Won Suk, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Nature CommunicationsOA

Recent advances in metal additive manufacturing (AM) have provided new opportunities for prompt designs of prototypes and facile personalization of products befitting the fourth industrial revolution. In this regard, its feasibility of becoming a green technology, which is not an inherent aspect of AM, is gaining more interests. A particular interest in adapting and understanding of eco-friendly ingredients can set its important groundworks. Here, we demonstrate a water-based solid-phase binding

Automotive EngineeringEngineering
13
Article|17 citations·2021
Monolithic Tandem Multicolor Image Sensor Based on Electrochromic Color‐Radix Demultiplexing
Young Jin Choi, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Advanced Materials

Optical data acquisition has been set as one of the milestones to testify the developments aimed at harnessing the full potential of the spatial and temporal data processing capabilities of the advanced semiconductor technology. A highly promising approach to drive the level of acquisition beyond the current technological node is the vertical integration of multiple photodetectors. However, vertical integration so far requires the same level of circuit complexity as lateral integration from the

Electrical and Electronic EngineeringEngineering
14
Article|16 citations·2023
Approaching Theoretical Limits in the Performance of Printed P‐Type CuI Transistors via Room Temperature Vacancy Engineering
Yonghyun Albert Kwon, Jin Hyeon Kim, Sunil V. Barma, Keun Hyung Lee, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Advanced Materials

Abstract Development of a novel high performing inorganic p ‐type thin film transistor could pave the way for new transparent electronic devices. This complements the widely commercialized n‐type counterparts, indium‐gallium‐zinc‐oxide (IGZO). Of the few potential candidates, copper monoiodide (CuI) stands out. It boasts visible light transparency and high intrinsic hole mobility (&gt;40 cm 2 V −1 s −1 ), and is suitable for various low‐temperature processes. However, the performance of reported

Materials ChemistryMaterials Science
15
Article|11 citations·2021
Cold-Trap-Mediated Broad Dynamic Photodetection in Graphene–Organic Hybrid Photonic Barristors
Dong Un Lim, Sae Byeok Jo, Jeong Ho Cho
SJR Q1Journal of the American Chemical Society

One of the most popular approaches to improve the performance of organic photonic devices has been to control the electrically heterogeneous charge-transferring interfaces via chemical modifications. Despite intense research efforts, however, the rapid pace of material evolution through the chemical versatility of the organic compound allows only limited room for the fine-tuning of the interfaces exclusive to specific materials. This limitation leads to an ill-controlled charge recombination beh

Electrical and Electronic EngineeringEngineering

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryPolymers and PlasticsRenewable Energy, Sustainability and the EnvironmentBiomedical EngineeringMolecular Biology

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