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Sung-Nam Park

Korea University · Engineering

About the Lab

Professor Sung-Nam Park's research lab specializes in ultrafast spectroscopy and photophysics, focusing on the dynamic behavior of hydrogen bond networks in aqueous ionic solutions and the design of advanced photosensitizers for photodynamic therapy. The lab employs advanced techniques such as 2D IR vibrational echo spectroscopy and polarization-selective pump-probe experiments to probe the structural and dynamical properties of water at the molecular level, particularly under extreme conditions like high salt concentrations. A key research direction involves engineering chromophores and fluorophores—such as modified BODIPYs and thionaphthalimides—with tailored photophysical properties for biomedical imaging and therapeutic applications. The lab also integrates machine learning with optical spectroscopy to accelerate the virtual screening and development of functional emitters.

ultrafast spectroscopyhydrogen bond dynamicsphotosensitizersBODIPYmachine learning in spectroscopy

Research Overview

Papers
221
Total Citations
7,058
Papers (5y)
49
Primary Field
Engineering

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
49total
2022
2023
2024
2025
2026
Citations per year (5y)
689total
20222023202420252026

Selected Papers

15
1
Article|445 citations·2019
An Emerging Molecular Design Approach to Heavy-Atom-Free Photosensitizers for Enhanced Photodynamic Therapy under Hypoxia
Nguyễn Văn Nghĩa, Sujie Qi, Sangin Kim, Nahyun Kwon, Gyoungmi Kim, Yubin Yim, Sungnam Park, Juyoung Yoon
SJR Q1Journal of the American Chemical Society

A novel strategy for designing highly efficient and activatable photosensitizers that can effectively generate reactive oxygen species (ROS) under both normoxia and hypoxia is proposed. Replacing both oxygen atoms in conventional naphthalimides (RNI-O) with sulfur atoms led to dramatic changes in the photophysical properties. The remarkable fluorescence quenching (ΦPL ≈ 0) of the resulting thionaphthalimides (RNI-S) suggested that the intersystem crossing from the singlet excited state to the re

Biomedical EngineeringEngineering
2
Article|316 citations·2020
Molecular Design of Highly Efficient Heavy‐Atom‐Free Triplet BODIPY Derivatives for Photodynamic Therapy and Bioimaging
Van‐Nghia Nguyen, Yubin Yim, Sangin Kim, Bokyeong Ryu, K.M.K. Swamy, Gyoungmi Kim, Nahyun Kwon, C‐Yoon Kim, Sungnam Park, Juyoung Yoon
SJR Q1Angewandte Chemie International Edition

Abstract Novel BODIPY photosensitizers were developed for imaging‐guided photodynamic therapy. The introduction of a strong electron donor to the BODIPY core through a phenyl linker combined with the twisted arrangement between the donor and the BODIPY acceptor is essential for reducing the energy gap between the lowest singlet excited state and the lowest triplet state (Δ E ST ), leading to a significant enhancement in the intersystem crossing (ISC) of the BODIPYs. Remarkably, the BDP‐5 with th

Materials ChemistryMaterials Science
3
Article|312 citations·2007
Hydrogen bond dynamics in aqueous NaBr solutions
Sungnam Park, M. D. Fayer
SJR Q1Proceedings of the National Academy of SciencesOA

Hydrogen bond dynamics of water in NaBr solutions are studied by using ultrafast 2D IR vibrational echo spectroscopy and polarization-selective IR pump-probe experiments. The hydrogen bond structural dynamics are observed by measuring spectral diffusion of the OD stretching mode of dilute HOD in H(2)O in a series of high concentration aqueous NaBr solutions with 2D IR vibrational echo spectroscopy. The time evolution of the 2D IR spectra yields frequency-frequency correlation functions, which pe

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
4
Article|194 citations·2008
Water DynamicsThe Effects of Ions and Nanoconfinement
Sungnam Park, David E. Moilanen, M. D. Fayer
SJR Q1The Journal of Physical Chemistry B

Hydrogen bond dynamics of water in highly concentrated NaBr salt solutions and reverse micelles are studied using ultrafast 2D-IR vibrational echo spectroscopy and polarization-selective IR pump-probe experiments performed on the OD hydroxyl stretch of dilute HOD in H(2)O. The vibrational echo experiments measure spectral diffusion, and the pump-probe experiments measure orientational relaxation. Both experimental observables are directly related to the structural dynamics of water's hydrogen bo

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
5
Article|167 citations·2021
Deep Learning Optical Spectroscopy Based on Experimental Database: Potential Applications to Molecular Design
Joonyoung F. Joung, Minhi Han, Jinhyo Hwang, Minseok Jeong, Dong Hoon Choi, Sungnam Park
SJR Q1JACS AuOA

for absorption and emission bandwidths, and 0.209, 0.371, and 0.262 for the logarithm of the extinction coefficient, PLQY, and emission lifetime, respectively. Finally, we demonstrated how a blue emitter with desired optical and photophysical properties could be efficiently virtually screened and developed by DL optical spectroscopy. DL optical spectroscopy can be efficiently used for developing chromophores and fluorophores in various research areas.

BiophysicsBiochemistry, Genetics and Molecular Biology
6
Article|123 citations·2009
Ultrafast Dynamics of Hydrogen Bond Exchange in Aqueous Ionic Solutions
Sungnam Park, Michael Odelius, Kelly J. Gaffney
SJR Q1The Journal of Physical Chemistry B

The structural and dynamical properties of aqueous ionic solutions influence a wide range of natural and biological processes. In these solutions, water has the opportunity to form hydrogen bonds with other water molecules and anions. Knowing the time scale with which these configurations interconvert represents a key factor to understanding the influence of molecular scale heterogeneity on chemical events in aqueous ionic solutions. We have used ultrafast IR spectroscopy and Car-Parrinello mole

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
7
Article|114 citations·2020
Experimental database of optical properties of organic compounds
Joonyoung F. Joung, Minhi Han, Minseok Jeong, Sungnam Park
SJR Q1Scientific DataOA

Experimental databases on the optical properties of organic chromophores are important for the implementation of data-driven chemistry using machine learning. Herein, we present a series of experimental data including various optical properties such as the first absorption and emission maximum wavelengths and their bandwidths (full width at half maximum), extinction coefficient, photoluminescence quantum yield, and fluorescence lifetime. A database of 20,236 data points was developed by collecti

Materials ChemistryMaterials Science
8
Article|101 citations·2020
Highly Efficient Aggregation-Induced Red-Emissive Organic Thermally Activated Delayed Fluorescence Materials with Prolonged Fluorescence Lifetime for Time-Resolved Luminescence Bioimaging
Sujie Qi, Sangin Kim, Nguyễn Văn Nghĩa, Youngmee Kim, Guangle Niu, Gyoungmi Kim, Sung‐Jin Kim, Sungnam Park, Juyoung Yoon
SJR Q1ACS Applied Materials & Interfaces

Organic thermally activated delayed fluorescence (TADF) materials are emerging as potential candidates for time-resolved fluorescence imaging in biological systems. However, the development of purely organic TADF materials with bright aggregated-state emissions in the red/near-infrared (NIR) region remains challenging. Here, we report three donor-acceptor-type TADF molecules as promising candidates for time-resolved fluorescence imaging, which are engineered by direct connection of electron-dona

Materials ChemistryMaterials Science
9
Article|90 citations·2006
Ultrafast Resonant Dynamics of Surface Plasmons in Gold Nanorods
Sungnam Park, Matthew Pelton, Mingzhao Liu, Philippe Guyot‐Sionnest, Norbert F. Scherer
SJR Q1The Journal of Physical Chemistry C

Electron dynamics in Au nanorods are studied with femtosecond nonlinear spectroscopic techniques, by directly exciting and probing the longitudinal surface plasmon resonance. The dispersive and absorptive parts of the third-order signal are measured using optical heterodyne detected four-wave-mixing spectroscopy. These signals are used to describe dynamics in Au nanorods in terms of frequency shift and broadening of the plasmon resonance. Pump−probe experiments are performed with a series of pum

Electronic, Optical and Magnetic MaterialsMaterials Science
10
Article|75 citations·2021
Donor engineered Deep-Blue emitters for tuning luminescence mechanism in Solution-Processed OLEDs
Jinhyo Hwang, Hyunchul Kang, Ji‐Eun Jeong, Han Young Woo, Min Ju Cho, Sungnam Park, Dong Hoon Choi
SJR Q1Chemical Engineering Journal
Electrical and Electronic EngineeringEngineering
11
Article|65 citations·2017
Chromogenic Tubular Polydiacetylenes from Topochemical Polymerization of Self-Assembled Macrocyclic Diacetylenes
Jung‐Moo Heo, Youngmee Kim, Seul Ki Han, Joonyoung F. Joung, Sang-hwa Lee, Sejin Han, Jaegeun Noh, Jaeyong Kim, Sungnam Park, Haiwon Lee, Yoon Mi Choi, Young-Sik Jung
SJR Q1Macromolecules

Tubular materials formed by self-assembly of small organic molecules find great utility in chemical and material science. Conventional tubular structures often lack stability because noncovalent molecular interactions are responsible for their conformational integrities. Herein we report the development of covalently linked chromogenic organic nanotubes which are prepared by using topochemical polymerization of self-assembled macrocyclic diacetylenes (MCDAs). Crystal structures of five MCDAs hav

Organic ChemistryChemistry
12
Article|60 citations·2013
Infrared Probes Based on Nitrile-Derivatized Prolines: Thermal Insulation Effect and Enhanced Dynamic Range
Kwang-Hee Park, Jonggu Jeon, Yumi Park, Soyoung Lee, Hyeok-Jun Kwon, Cheonik Joo, Sungnam Park, Hogyu Han, Minhaeng Cho
SJR Q1The Journal of Physical Chemistry Letters

Vibrational chromophores that are sensitive to local electrostatic environment are useful probes of structural variations of proteins on subnanosecond time scales, but their short vibrational lifetimes often limit their applicability. Here we explore a possibility to increase the lifetime of nitrile probes by introducing heavy atoms between the probe and protein side chains. Stereoisomers of thiocyanato- and selenocyanato-derivatized prolines, Pro-SCN and Pro-SeCN, are synthesized, and their CN

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
13
Article|58 citations·2020
A thiocoumarin-based turn-on fluorescent probe for hypochlorite detection and its application to live-cell imaging
Nguyễn Văn Nghĩa, Seonye Heo, Sangin Kim, K.M.K. Swamy, Jeongsun Ha, Sungnam Park, Juyoung Yoon
SJR Q1Sensors and Actuators B Chemical
SpectroscopyChemistry
14
Article|57 citations·2019
Facile one-pot polymerization of a fully conjugated donor–acceptor block copolymer and its application in efficient single component polymer solar cells
Chang Geun Park, Su Hong Park, Su Hong Park, Youngseo Kim, Thanh Luan Nguyen, Han Young Woo, Hungu Kang, Hyo Jae Yoon, Sungnam Park, Sungnam Park, Min Ju Cho, Dong Hoon Choi
SJR Q1Journal of Materials Chemistry A

A single component polymer solar cell with a CDABP film annealed at 180 °C showed a maximum power conversion efficiency of 5.28%, which is much higher than that (2.62%) of the device with the as-cast film.

Electrical and Electronic EngineeringEngineering
15
Article|55 citations·2010
Ligand Exchange Dynamics in Aqueous Solution Studied with 2DIR Spectroscopy
Sungnam Park, Minbiao Ji, Kelly J. Gaffney
SJR Q1The Journal of Physical Chemistry B

We have used time-resolved multidimensional vibrational spectroscopy, generally termed 2DIR spectroscopy, to study the equilibrium dynamics of ligand exchange in an aqueous solution containing 3.4 M Mg(ClO(4))(2) and 1.2 M NaSCN. The sensitivity of the CN stretching frequency of thiocyanate (SCN(-)) to contact ion pair formation with Mg(2+) ions generates distinct spectroscopic signatures for the MgNCS(+) contact ion pair and the free SCN(-). We have utilized 2DIR spectroscopy to successfully re

Atomic and Molecular Physics, and OpticsPhysics and Astronomy

Research Areas

Electrical and Electronic EngineeringMaterials ChemistryAtomic and Molecular Physics, and OpticsOrganic ChemistryBiomedical EngineeringPhysical and Theoretical Chemistry

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