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Woojae Kim

Yonsei University · Agricultural and Biological Sciences

About the Lab

Professor Woojae Kim's research lab specializes in the photophysical and photochemical dynamics of functional organic semiconductors, with a focus on intramolecular charge transfer, singlet fission, and excimer formation in tailored molecular architectures. The lab employs advanced ultrafast spectroscopic techniques—such as time-resolved fluorescence, impulsive stimulated Raman spectroscopy, and Bayesian adaptive psychophysics—to probe real-time structural and electronic changes during excited-state processes. Their work bridges molecular design with functional applications in optoelectronics, including organic photovoltaics, sensors, and vision science. By manipulating molecular structure and environment (e.g., solvent polarity, side-chain engineering), the lab aims to control and optimize energy and charge transfer dynamics for next-generation optoelectronic materials.

excited-state dynamicsintramolecular charge transfersinglet fissionultrafast spectroscopymolecular semiconductors

Research Overview

Papers
242
Total Citations
3,180
Papers (5y)
51
Primary Field
Agricultural and Biological Sciences

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
51total
2022
2023
2024
2025
2026
Citations per year (5y)
387total
20222023202420252026

Selected Papers

15
1
Article|184 citations·2012
Development of Novel Breast Cancer Recurrence Prediction Model Using Support Vector Machine
Woojae Kim, Ku Sang Kim, Jeong Eon Lee, Dong‐Young Noh, Sung-Won Kim, Yong Sik Jung, Man Young Park, Rae Woong Park
SJR Q2Journal of Breast CancerOA

As the selected prognostic factors can be easily obtained in clinical practice, the proposed model might prove useful in the prediction of breast cancer recurrence. The prediction model is freely available in the website (http://ami.ajou.ac.kr/bcr/).

Cancer ResearchBiochemistry, Genetics and Molecular Biology
2
Article|91 citations·2016
Evaluating the performance of the quick CSF method in detecting contrast sensitivity function changes
Fang Hou, Luis Andres Lesmes, Woojae Kim, Hairong Gu, Mark A. Pitt, Jay I. Myung, Zhong‐Lin Lu
SJR Q1Journal of VisionOA

The contrast sensitivity function (CSF) has shown promise as a functional vision endpoint for monitoring the changes in functional vision that accompany eye disease or its treatment. However, detecting CSF changes with precision and efficiency at both the individual and group levels is very challenging. By exploiting the Bayesian foundation of the quick CSF method (Lesmes, Lu, Baek, & Albright, 2010), we developed and evaluated metrics for detecting CSF changes at both the individual and group l

Cognitive NeuroscienceNeuroscience
3
Article|77 citations·2019
Solvent-Modulated Charge-Transfer Resonance Enhancement in the Excimer State of a Bay-Substituted Perylene Bisimide Cyclophane
Woojae Kim, Agnieszka Nowak‐Król, Yongseok Hong, Felix J.V. Schlösser, Frank Würthner, Dongho Kim
SJR Q1The Journal of Physical Chemistry Letters

Excimer, a configurational mixing between Frenkel exciton and charge-transfer resonance states, is typically regarded as a trap state that hinders desired energy or charge-transfer processes in artificial molecular assemblies. However, in recent days, the excimer has received much attention as a functional intermediate in the excited-state dynamics such as singlet fission or charge-separation processes. In this work, we show that the relative contribution to charge-transfer resonance of the exci

Electrical and Electronic EngineeringEngineering
4
Article|61 citations·2016
Modulation of Symmetry-Breaking Intramolecular Charge-Transfer Dynamics Assisted by Pendant Side Chains in π-Linkers in Quadrupolar Diketopyrrolopyrrole Derivatives
Woojae Kim, Jooyoung Sung, Marek Grzybowski, Daniel T. Gryko, Dongho Kim
SJR Q1The Journal of Physical Chemistry Letters

The effect of the length of pendant side chains in centrosymmetric quadrupolar molecules on dynamics of their most perplexing photophysical phenomenon, i.e., symmetry-breaking intramolecular charge transfer, has been discovered. Unexpectedly, considerable influence of length of these pendant side chains in π-linkers arose as a structural factor enabling the control of the degree of fluorescence solvatochromism. The symmetry-breaking intramolecular charge-transfer dynamics has been described on q

Physical and Theoretical ChemistryChemistry
5
Article|47 citations·2020
Tracking Structural Evolution during Symmetry‐Breaking Charge Separation in Quadrupolar Perylene Bisimide with Time‐Resolved Impulsive Stimulated Raman Spectroscopy
Woojae Kim, Taeyeon Kim, Seongsoo Kang, Yongseok Hong, Frank Würthner, Dongho Kim
SJR Q1Angewandte Chemie International Edition

Abstract Elucidating structural roles in photoinduced charge transfer is indispensable, as nuclear rearrangements are simultaneously usually involved in the dynamics. However, it is hard to evaluate whether the structural changes occur or not by using conventional time‐resolved electronic spectroscopy. Here, time‐resolved impulsive stimulated Raman spectroscopy is applied to record the evolution of vibrational snapshots during charge‐separation dynamics of donor–acceptor–donor‐type quadrupolar p

Physical and Theoretical ChemistryChemistry
6
Article|35 citations·2023
Controlling Intramolecular Singlet Fission Dynamics via Torsional Modulation of Through-Bond versus Through-Space Couplings
Kanad Majumder, Soham Mukherjee, Naitik A. Panjwani, Jieun Lee, Robert Bittl, Woojae Kim, Satish Patil, Andrew J. Musser
SJR Q1Journal of the American Chemical Society

Covalent dimers, particularly pentacenes, are the dominant platform for developing a mechanistic understanding of intramolecular singlet fission (iSF). Numerous studies have demonstrated that a photoexcited singlet state in these structures can rapidly and efficiently undergo exciton multiplication to form a correlated pair of triplets within a single molecule, with potential applications from photovoltaics to quantum information science. One of the most significant barriers limiting such dimers

BiophysicsBiochemistry, Genetics and Molecular Biology
7
Article|25 citations·2003
Debunking the Effects of Taurine in Red Bull Energy Drink
Woojae Kim
eScholarship (California Digital Library)OA

Red Bull is a carbonated beverage that initially gained wide popularity in the U.S. during the late nineties. Taking root amongst college campuses, it appeared throughout underground clubs and eventually entered mainstream pop-culture. The manufactures claim that drinking Red Bull enhances physical endurance, concentration and reaction speed (1,6). The main ingredients of Red Bull include sugar, taurine, glucuronolactone and caffeine. It is hypothesized that the combinatorial influences of these

Cell BiologyBiochemistry, Genetics and Molecular Biology
8
Article|25 citations·2021
Tracking ultrafast reactions in organic materials through vibrational coherence: vibronic coupling mechanisms in singlet fission
Woojae Kim, Andrew J. Musser
SJR Q1Advances in Physics XOA

A multitude of ultrafast photoinduced reactions in organic semiconductors are governed by the close interplay between nuclear and electronic degrees of freedom. From biological light-harvesting and photoprotection to organic solar cells, the critical electronic dynamics are often precisely synchronized with and driven by nuclear motions, in a breakdown of the Born-Oppenheimer approximation. Ultrafast time-domain Raman methods exploit impulsive excitation to generate nuclear wavepackets and track

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
9
Article|23 citations·2024
Suppressing Hole Accumulation Through Sub‐Nanometer Dipole Interfaces in Hybrid Perovskite/Organic Solar Cells for Boosting Near‐Infrared Photon Harvesting
Minho Lee, Min Seok Kim, Yu Jin Lee, Byeongsu Kim, Ju‐Hyeon Kim, Chungryeol Lee, Jihyung Lee, Jihyung Lee, Dong‐Jun Kim, Hyunseok Ko, Masoud Darvish Ganji, Kwanghee Lee
SJR Q1Advanced Materials

Abstract The potential of hybrid perovskite/organic solar cells (HSCs) is increasingly recognized owing to their advantageous characteristics, including straightforward fabrication, broad‐spectrum photon absorption, and minimal open‐circuit voltage ( V OC ) loss. Nonetheless, a key bottleneck for efficiency improvement is the energy level mismatch at the perovskite/bulk‐heterojunction (BHJ) interface, leading to charge accumulation. In this study, it is demonstrated that introducing a uniform su

Electrical and Electronic EngineeringEngineering
10
Article|19 citations·2015
The Role of Linkers in the Excited-State Dynamic Planarization Processes of Macrocyclic Oligothiophene 12-Mers
Woojae Kim, Jooyoung Sung, Kyu Hyung Park, Hideyuki Shimizu, Mika Imamura, Minwoo Han, Eunji Sim, Masahiko Iyoda, Dongho Kim
SJR Q1The Journal of Physical Chemistry Letters

Linkers adjoining chromophores play an important role in modulating the structure of conjugated systems, which is bound up with their photophysical properties. However, to date, the focus of works dealing with linker effects was limited only to linear π-conjugated materials, and there have been no detailed studies on cyclic counterparts. Herein we report the linker effects on the dynamic planarization processes of π-conjugated macrocyclic oligothiophene 12-mers, where the different ratio between

Electrical and Electronic EngineeringEngineering
11
Article|19 citations·2023
Anthracene derivatives with strong spin–orbit coupling and efficient high-lying reverse intersystem crossing beyond the El-Sayed rule
Ki Ju Kim, Jae-Sung Kim, Jong Tae Lim, Jinyeong Heo, Bum Jun Park, Hyewon Nam, Hyeonwoo Choi, Seung Soo Yoon, Woojae Kim, Sunwoo Kang, Taekyung Kim
SJR Q1Materials Horizons

, effectively converted triplet excitons into singlet excitons with an EUE of 64.3%, contributed by a direct hot exciton channel of 19.2% and a TTF-mediated hot exciton channel of 15.1%. Despite the low outcoupling efficiency, the non-doped device with 2MIQ-NPA achieved an excellent device performance with an external quantum efficiency of 7.0%.

Electrical and Electronic EngineeringEngineering
12
Article|16 citations·2024
Heterogeneous singlet fission in a covalently linked pentacene dimer
Woojae Kim, Naitik A. Panjwani, K. C. Krishnapriya, Kanad Majumder, Jyotishman Dasgupta, Robert Bittl, Satish Patil, Andrew J. Musser
SJR Q1Cell Reports Physical ScienceOA

Molecular dimers are generally regarded as essential tools for probing structure-property relationships in condensed-phase systems, revealing complexities where structural tuning is challenging. Traditionally treated as "static," with properties defined by their optimized geometry, we argue that dimers are "dynamic," exhibiting considerable conformational heterogeneity over time, which significantly influences interchromophore coupling strengths. Illustrating this, we explore the singlet fission

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|15 citations·2024
Coherent photoexcitation of entangled triplet pair states
Juno Kim, David C. Bain, Vivian Ding, Kanad Majumder, Dean Windemuller, Jiaqi Feng, Jishan Wu, Satish Patil, John E. Anthony, Woojae Kim, Andrew J. Musser
SJR Q1Nature ChemistryOA
Electrical and Electronic EngineeringEngineering
14
Article|13 citations·2016
Planning Beyond the Next Trial in Adaptive Experiments: A Dynamic Programming Approach
Woojae Kim, Mark A. Pitt, Zhong‐Lin Lu, Jay I. Myung
SJR Q1Cognitive Science

Experimentation is at the heart of scientific inquiry. In the behavioral and neural sciences, where only a limited number of observations can often be made, it is ideal to design an experiment that leads to the rapid accumulation of information about the phenomenon under study. Adaptive experimentation has the potential to accelerate scientific progress by maximizing inferential gain in such research settings. To date, most adaptive experiments have relied on myopic, one-step-ahead strategies in

Cognitive NeuroscienceNeuroscience
15
Article|12 citations·2023
Tuning Symmetry‐Breaking Charge Transfer by Altering Connectivity Between Anthracene Chromophores
Byeongjoo Kang, Woojae Kim
SJR Q1ChemPhotoChem

Abstract In this study, we report on the dynamics of symmetry‐breaking charge transfer (SB‐CT) in a specific derivative of bianthracene, 9,9’,10,10’‐tetraphenyl‐2,2’‐bianthracene ( TPBA ). Unlike the conventional 9,9’‐bianthracene, TPBA exhibits a notably planar structure due to reduced steric hindrance between anthracene chromophores. This structural characteristic results in a pronounced short‐range charge transfer coupling, driven by substantial overlap integrals of hole and electron. This is

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Materials ChemistryPlant ScienceElectrical and Electronic EngineeringAerospace EngineeringEcology, Evolution, Behavior and SystematicsAtomic and Molecular Physics, and Optics

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