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Taeyeon Kim

Sungkyunkwan University · Materials Science

About the Lab

Professor Taeyeon Kim's research lab specializes in the fundamental understanding of excited-state dynamics in functional molecular systems, with a focus on charge transfer, energy transfer, and vibronic coupling in organic and supramolecular architectures. The lab employs advanced ultrafast spectroscopic techniques—such as femtosecond transient absorption, time-resolved infrared, and two-dimensional electronic spectroscopy—to probe electronic and vibrational dynamics in porphyrin arrays, donor-acceptor dyads, and 2D supramolecular materials. Current research directions include symmetry-breaking charge transfer, two-step charge separation in organic semiconductors, and the design of biomimetic 2D materials for sensing and energy conversion. The lab also explores the interplay between extracellular matrix proteins and cellular differentiation, linking molecular structure to biological function.

excited-state dynamicscharge transferultrafast spectroscopysupramolecular materialsvibronic coupling

Research Overview

Papers
238
Total Citations
3,537
Papers (5y)
64
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
64total
2022
2023
2024
2025
2026
Citations per year (5y)
488total
20222023202420252026

Selected Papers

15
1
Article|166 citations·2014
Application of a phase-change material to improve the electrical performance of vertical-building-added photovoltaics considering the annual weather conditions
Jung‐Woo Park, Taeyeon Kim, Seung-Bok Leigh
SJR Q1Solar Energy
Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|59 citations·2019
Dermatopontin in Skeletal Muscle Extracellular Matrix Regulates Myogenesis
Taeyeon Kim, Khurshid Ahmad, Sibhghatulla Shaikh, Arif Tasleem Jan, Myung-Gi Seo, Eun Ju Lee, Inho Choi
SJR Q1CellsOA

Dermatopontin (DPT) is an extensively distributed non-collagenous component of the extracellular matrix predominantly found in the dermis of the skin, and consequently expressed in several tissues. In this study, we explored the role of DPT in myogenesis and perceived that it enhances the cell adhesion, reduces the cell proliferation and promotes the myoblast differentiation in C2C12 cells. Our results reveal an inhibitory effect with fibronectin (FN) in myoblast differentiation. We also observe

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|59 citations·2017
Symmetry-breaking charge transfer in the excited state of directly linked push–pull porphyrin arrays
Taeyeon Kim, Jinseok Kim, Hirotaka Mori, Seongchul Park, Manho Lim, Atsuhiro Osuka, Dongho Kim
SJR Q2Physical Chemistry Chemical Physics

Herein, we revealed a symmetry-breaking charge transfer (SBCT) process in the excited state of a directly linked push-pull porphyrin dyad (AD) and triad (ADA) via spectroscopic measurements including steady-state absorption and fluorescence, time-resolved fluorescence (TRF), femtosecond transient absorption (fs-TA), and time-resolved infrared (TRIR) measurements. Unprecedented broad fluorescence spectra were observed for porphyrin arrays in polar solvents; these were attributed to the existence

Materials ChemistryMaterials Science
4
Article|56 citations·2019
Two-Step Charge Separation Passing Through the Partial Charge-Transfer State in a Molecular Dyad
Taeyeon Kim, Woojae Kim, Olena Vakuliuk, Daniel T. Gryko, Dongho Kim
SJR Q1Journal of the American Chemical Society

Charge separation (CS) in molecular systems usually takes place in weakly coupled donor-acceptor dyads where an electron charge moves from the donor to the acceptor in the local excited state of a chromophore. Herein, we present a two-step charge-separation process in a newly synthesized diketopyrrolopyrrole-pyrrolopyrrole (DPP-PP) dyad (<b>AD</b>), which starts from the initial photoexcited bright exciton and goes through a partial charge-transfer (CT) state before finally reaching the charge-s

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|52 citations·2015
Comparison of Two Commercial Type 1 Porcine Reproductive and Respiratory Syndrome Virus (PRRSV) Modified Live Vaccines against Heterologous Type 1 and Type 2 PRRSV Challenge in Growing Pigs
Taeyeon Kim, Changhoon Park, Kyuhyung Choi, Jiwoon Jeong, Ikjae Kang, Su‐Jin Park, Chanhee Chae
Clinical and Vaccine ImmunologyOA

The objective of the present study was to compare the efficacy of two commercial type 1 porcine reproductive and respiratory syndrome virus (PRRSV) modified live vaccines against heterologous type 1 and type 2 PRRSV challenge in growing pigs. Vaccination with a type 1 PRRSV vaccine reduced the level of viremia after type 1 PRRSV challenge but did not reduce the level of viremia after the type 2 PRRSV challenge in pigs. Increased levels of interleukin-10 (IL-10) stimulated by type 2 PRRSV coincid

Animal Science and ZoologyAgricultural and Biological Sciences
6
Review|52 citations·2020
Supramolecular Two‐Dimensional Systems and Their Biological Applications
Taeyeon Kim, Jung Yeon Park, Jiwon Hwang, Gunhee Seo, Yongju Kim
SJR Q1Advanced Materials

Various biological systems rely on the supramolecular assembly of biomolecules through noncovalent bonds for performing sophisticated functions. In particular, cell membranes, which are 2D structures in biological systems, have various characteristics such as a large surface, flexibility, and molecule-recognition ability. Supramolecular 2D materials based on biological systems provide a novel perspective for the development of functional 2D materials. The physical and chemical properties of 2D s

BiomaterialsMaterials Science
7
Article|45 citations·2022
π-Stacking-Dependent Vibronic Couplings Drive Excited-State Dynamics in Perylenediimide Assemblies
Taeyeon Kim, Chenjian Lin, Jonathan D. Schultz, Ryan M. Young, Michael R. Wasielewski
SJR Q1Journal of the American Chemical Society

Vibronic coupling, the interplay of electronic and nuclear vibrational motion, is considered a critical mechanism in photoinduced reactions such as energy transfer, charge transfer, and singlet fission. However, our understanding of how particular vibronic couplings impact excited-state dynamics is lacking due to the limited number of experimental studies of model molecular systems. Herein, we use two-dimensional electronic spectroscopy (2DES) to launch and interrogate a range of vibronic cohere

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|42 citations·2020
Excitonically Coupled Cyclic BF2 Arrays of Calix[8]‐ and Calix[16]phyrin as Near‐IR‐Chromophores
Taeyeon Kim, Zhiming Duan, Sangita Talukdar, Chuanhu Lei, Dongho Kim, Jonathan L. Sessler, Tridib Sarma
SJR Q1Angewandte Chemie International Edition

Abstract Two giant calix[ n ]phyrin derivatives namely calix[8]‐ ( 4 ) and calix[16]phyrin ( 5 ), involving two and four BF 2 units, respectively, were prepared through the condensation of the bis‐naphthobipyrrolylmethene‐BF 2 complex ( 3 ) with pentafluorobenzaldehyde. Calix[ n ]phyrins 4 and 5 display extremely high extinction coefficients (3.67 and 4.82×10 5 m −1 cm −1 , respectively) in the near‐IR region, which was taken as initial evidence for strong excitonic coupling within these cyclic

Materials ChemistryMaterials Science
9
Article|41 citations·2018
Solvent and Structural Fluctuations Induced Symmetry-Breaking Charge Transfer in a Porphyrin Triad
Taeyeon Kim, Woojae Kim, Hirotaka Mori, Atsuhiro Osuka, Dongho Kim
SJR Q1The Journal of Physical Chemistry C

This study aims to show that the symmetry-breaking charge transfer (SBCT) in a donor–acceptor–donor (DAD) porphyrin triad occurs via solvent and structural fluctuations measured by using femtosecond broadband fluorescence upconversion spectroscopy, which can directly trace the origin of the emitting state by monitoring its emission dipole moment as a function of time. While the emission dipole moment of the triad in the excited state remains nearly unchanged in nonpolar solvents such as cyclohex

Materials ChemistryMaterials Science
10
Article|35 citations·2023
Two-Dimensional Peptide Assembly via Arene–Perfluoroarene Interactions for Proliferation and Differentiation of Myoblasts
Taeyeon Kim, Jinwoo Hong, Jehan Kim, Jinhan Cho, Yongju Kim
SJR Q1Journal of the American Chemical SocietyOA

Supramolecular assembly based on aromatic interactions can provide well-defined nanostructures with an understanding of intermolecular interactions at the molecular level. The peptide assembly via a supramolecular approach can overcome the inherent limitations of bioactive peptides, such as proteolytic degradations and rapid internalizations into the cytosol. Although extensive research has been carried out on supramolecular peptide materials with a two-dimensional (2D) structure, more needs to

BiomaterialsMaterials Science
11
Article|34 citations·2011
A new sensorless drive scheme for a BLDC motor based on the terminal voltage difference
Taeyeon Kim, Chungil Kim, Joon Lyou

This paper presents a new sensorless drive scheme for a brushless DC (BLDC) motor based on the terminal voltage difference. Unlike the zero crossing point (ZCP) of the phase back electro-motive force (BEMF) which has been used in the conventional sensorless drive schemes, the ZCP of the BEMF difference between two phases corresponds to the commutation point of a BLDC motor accurately. So as to detect the ZCP and adopt it to the BLDC motor commutation, a circuit which constitutes of a differentia

Electrical and Electronic EngineeringEngineering
12
Article|33 citations·2017
High production of 2,3-butanediol from glycerol without 1,3-propanediol formation by Raoultella ornithinolytica B6
Taeyeon Kim, Sukhyeong Cho, Han Min Woo, Sun‐Mi Lee, Jinwon Lee, Youngsoon Um, Jin‐Ho Seo
SJR Q1Applied Microbiology and Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|31 citations·2013
Energy consumption analysis of a residential building with phase change materials under various cooling and heating conditions
Taeyeon Kim, Sangmin Ahn, Seung-Bok Leigh
SJR Q2Indoor and Built Environment

Phase change materials (PCMs) absorb or release a large amount of heat when changing phase from solid to liquid or vice versa. When this characteristic of PCM is utilized, it can be employed effectively for energy conversation in buildings. To apply PCM to buildings, the thermal characteristics of PCM must be considered, such as the melting temperature and temperature range of the phase changes. In addition, the characteristics of the heating and cooling system, which influence the cycle of PCM

Mechanical EngineeringEngineering
14
Article|27 citations·2020
Switching resonance character within merocyanine stacks and its impact on excited-state dynamics
Taeyeon Kim, Seongsoo Kang, Eva Kirchner, David Bialas, Woojae Kim, Frank Würthner, Dongho Kim
SJR Q1ChemOA
Cellular and Molecular NeuroscienceNeuroscience
15
Article|21 citations·2013
Escherichia coli YmdB regulates biofilm formation independently of its role as an RNase III modulator
Taeyeon Kim, Juyeon Lee, Kwang-sun Kim
SJR Q1BMC MicrobiologyOA

BACKGROUND: Ribonuclease III (RNase III) activity modulates hundreds of genes in Escherichia coli (E. coli). YmdB, a member of the macrodomain protein family, is one of known trans-acting regulators of RNase III activity; however, the significance of its regulatory role in specific bacterial cellular processes and related genes has not been determined. YmdB overexpression was used to model YmdB-induced RNase III inhibition in vivo, and microarray analysis identified gene targets and cellular pro

GeneticsBiochemistry, Genetics and Molecular Biology

Research Areas

Materials ChemistryElectrical and Electronic EngineeringMolecular BiologyBiomedical EngineeringAtomic and Molecular Physics, and OpticsOrganic Chemistry

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