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Keewook Paeng

Sungkyunkwan University · Materials Science

About the Lab

Professor Keewook Paeng's research lab specializes in probing molecular dynamics in soft materials, particularly polymer thin films near the glass transition temperature. Using advanced single-molecule fluorescence techniques, the lab investigates dynamic heterogeneity, surface mobility, and segmental dynamics at the nanoscale, revealing how molecular motions vary spatially and temporally in amorphous polymers. A key focus is understanding the emergence of a mobile surface layer in supported and freestanding polymer films, with implications for nanoscale rheology and material design. The lab combines optical spectroscopy with precise temperature control to elucidate the fundamental principles governing relaxation and ergodicity in supercooled and glassy states.

dynamic heterogeneitypolymer thin filmssingle-molecule fluorescenceglass transitionsurface mobility

Research Overview

Papers
65
Total Citations
2,120
Papers (5y)
18
Primary Field
Materials Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
18total
2021
2022
2023
2024
2025
Citations per year (5y)
173total
20212022202320242025

Selected Papers

15
1
Article|350 citations·2011
Direct Measurement of Molecular Motion in Freestanding Polystyrene Thin Films
Keewook Paeng, Stephen F. Swallen, M. D. Ediger
SJR Q1Journal of the American Chemical Society

An optical photobleaching technique has been used to measure the reorientation of dilute probes in freestanding polystyrene films as thin as 14 nm. Temperature-ramping and isothermal anisotropy measurements reveal the existence of two subsets of probe molecules with different dynamics. While the slow subset shows bulk-like dynamics, the more mobile subset reorients within a few hundred seconds even at T(g,DSC) - 25 K (T(g,DSC) is the glass transition temperature of bulk polystyrene). At T(g,DSC)

Materials ChemistryMaterials Science
2
Review|262 citations·2018
A review of doping modulation in graphene
Hoik Lee, Keewook Paeng, Ick Soo Kim
SJR Q1Synthetic Metals
Materials ChemistryMaterials Science
3
Article|130 citations·2011
Molecular mobility in supported thin films of polystyrene, poly(methyl methacrylate), and poly(2-vinyl pyridine) probed by dye reorientation
Keewook Paeng, Ranko Richert, M. D. Ediger
SJR Q2Soft Matter

Temperature-ramping anisotropy measurements were used to probe the molecular mobility of fluorescent probes in polystyrene, poly(methyl methacrylate), and poly(2-vinyl pyridine) films supported upon silicon wafers with native oxide coatings. All polymer films showed evidence of high mobility at the free surface. The fraction of a film with high mobility was characterized as a mobile surface layer thickness, which increased with temperature. The mobile surface layer thickness for supported films

Materials ChemistryMaterials Science
4
Article|122 citations·2011
Molecular Motion in Free-Standing Thin Films of Poly(methyl methacrylate), Poly(4-tert-butylstyrene), Poly(α-methylstyrene), and Poly(2-vinylpyridine)
Keewook Paeng, M. D. Ediger
SJR Q1Macromolecules

A photobleaching technique has been used to measure the reorientation of dilute fluorescent probes in free-standing polymer films from 7 nm to 20 μm thick. Similar to our previous report on free-standing polystyrene films, two subsets of probes with distinct dynamics were observed in free-standing poly(methyl methacrylate) films. The more mobile subset of probes is consistently interpreted in terms of a surface layer, and the thickness of the mobile surface layer is shown to increase with temper

Materials ChemistryMaterials Science
5
Article|75 citations·2015
Ideal probe single-molecule experiments reveal the intrinsic dynamic heterogeneity of a supercooled liquid
Keewook Paeng, Heungman Park, Dat Tien Hoang, Laura J. Kaufman
SJR Q1Proceedings of the National Academy of SciencesOA

The concept of dynamic heterogeneity and the picture of the supercooled liquid as a mosaic of environments with distinct dynamics that interchange in time have been invoked to explain the nonexponential relaxations measured in these systems. The spatial extent and temporal persistence of these regions of distinct dynamics have remained challenging to identify. Here, single-molecule fluorescence measurements using a probe similar in size and mobility to the host o-terphenyl unambiguously reveal e

Materials ChemistryMaterials Science
6
Article|50 citations·2016
Single Molecule Experiments Reveal the Dynamic Heterogeneity and Exchange Time Scales of Polystyrene near the Glass Transition
Keewook Paeng, Laura J. Kaufman
SJR Q1Macromolecules

In a polymeric material near its glass transition temperature, segmental dynamics of a given spatial region may differ considerably from that of neighboring regions without apparent structural origin, analogous to the supercooled liquid state of low molecular weight glass formers. Given that the supercooled liquid state is a (metastable) equilibrium state, spatial variations in dynamics are expected to average out in time, consistent with ergodicity of the system. By probing the rotations of flu

Materials ChemistryMaterials Science
7
Review|48 citations·2013
Single molecule rotational probing of supercooled liquids
Keewook Paeng, Laura J. Kaufman
SJR Q1Chemical Society Reviews

Much of the interesting behavior that has been observed in supercooled liquids appears to be related to dynamic heterogeneity, the presence of distinct dynamic environments - with no apparent underlying structural basis - in these systems. To most directly interrogate these environments, proposed to span regions just a few nanometers across, molecular length scale probes are required. Single molecule fluorescent microscopy was introduced to the field a decade ago and has provided strong evidence

Materials ChemistryMaterials Science
8
Article|48 citations·2019
Thiol-based chemistry as versatile routes for the effective functionalization of cellulose nanofibers
Sol An, Bokyoung Jeon, Jong Hyuk Bae, Ick Soo Kim, Keewook Paeng, Myungwoong Kim, Hoik Lee
SJR Q1Carbohydrate Polymers
BiomaterialsMaterials Science
9
Article|34 citations·2011
Temperature-ramping measurement of dye reorientation to probe molecular motion in polymer glasses
Keewook Paeng, Hau-Nan Lee, Stephen F. Swallen, M. D. Ediger
SJR Q1The Journal of Chemical Physics

A temperature-ramping anisotropy measurement is introduced as an efficient way to study molecular motion in polymer glasses. For these experiments, fluorescent molecules were dispersed in the polymer glass and the reorientation of these dyes was used as a probe of segmental dynamics. For thick samples of polystyrene, poly (4-tert-butyl styrene), and poly(2-vinyl pyridine), temperature-ramping anisotropy measurements have a shape similar to differential scanning calorimetry measurements and nearl

Physical and Theoretical ChemistryChemistry
10
Article|29 citations·2022
Improved Thermal Stability and Operational Lifetime of Blue Fluorescent Organic Light-Emitting Diodes by Using a Mixed-Electron Transporting Layer
Min Seok Ki, Myungsun Sim, Ohyun Kwon, Kyuhyun Im, Byoungki Choi, Byeong Jun, Young Dok Kim, Taeyoung Jin, Keewook Paeng
SJR Q1ACS Materials Letters

Since the chemical and thermal stability of organic thin film layers in organic light-emitting diodes (OLEDs) highly influences the operational device lifetime, a rational advanced design of materials and device structures is quite necessary. Here, we report a significant improvement in the device thermal stability and operational lifetime of blue-fluorescent OLEDs by adopting a mixed electron transporting layer (mETL) of 4,7-diphenyl-1,10-phenanthroline (BPhen) and hydroxyquinolinolato-lithium

Electrical and Electronic EngineeringEngineering
11
Article|23 citations·2023
CuBTC Metal–Organic Framework Decorated with FeBTC Nanoparticles with Enhance Water Stability for Environmental Remediation Applications
Donghun Kim, Ik Ji Kim, Hyuk Taek Kwon, Keewook Paeng, Hoik Lee
SJR Q1ACS OmegaOA

Metal-organic frameworks (MOFs) based on Cu-benzene tricarboxylate (CuBTC) are widely used for gas storage and removal applications. However, they readily lose their crystal structures under humid conditions, limiting their practical applications. This structural decomposition reduces the specific surface area, gas adsorption capability, and recyclability of CuBTC considerably. In this study, a stable MOF against water exposure was designed based on FeBTC nanoparticle-covered CuBTC (FeCuBTC). A

Inorganic ChemistryChemistry
12
Article|23 citations·2022
Single molecule demonstration of Debye–Stokes–Einstein breakdown in polystyrene near the glass transition temperature
Nicole L. Mandel, Soohyun Lee, Kimyung Kim, Keewook Paeng, Laura J. Kaufman
SJR Q1Nature CommunicationsOA

Abstract Rotational-translational decoupling, in which translational motion is apparently enhanced over rotational motion in violation of Stokes-Einstein (SE) and Debye-Stokes-Einstein (DSE) predictions, has been observed in materials near their glass transition temperatures (T g ). This has been posited to result from ensemble averaging in the context of dynamic heterogeneity. In this work, ensemble and single molecule experiments are performed in parallel on a fluorescent probe in high molecul

Materials ChemistryMaterials Science
13
Article|18 citations·2019
How Tethered Probes Report the Dynamics of a Polymer near the Glass Transition
Ji Won Choi, Soohyun Lee, Jongwon Choe, Yura Chung, Yae Eun Lee, Ji-Su Kim, Myungwoong Kim, Keewook Paeng
SJR Q1ACS Macro Letters

How tethered probes report dynamics of host polymers near the glass transition was investigated by changing the length of the flexible linkers and the number of tethering points via imaging rotational fluorescence correlation microscopy and compared with free probes of different sizes. The results show that tethering did not alter the temperature-dependence of polymer dynamics and the shape of the correlation decay reported by the probe; however, the rotation slowed down up to ≈1 decade when bot

Materials ChemistryMaterials Science
14
Article|17 citations·2012
Fast Crystal Growth Induces Mobility and Tension in Supercooled o-Terphenyl
Keewook Paeng, C. Travis Powell, Lian Yu, M. D. Ediger
SJR Q1The Journal of Physical Chemistry Letters

A photobleaching method was used to measure the reorientation of dilute probes in liquid o-terphenyl near a crystal growth front. Near the glass-transition temperature Tg, mobility in the supercooled liquid was enhanced within ∼10 μm of the crystal growth front, by as much as a factor of 4. This enhanced mobility appears to be caused by tension created in the sample as a result of the density difference between the supercooled liquid and crystal. The maximum observed mobility enhancement corresp

Materials ChemistryMaterials Science
15
Article|15 citations·2018
Which probes can report intrinsic dynamic heterogeneity of a glass forming liquid?
Keewook Paeng, Laura J. Kaufman
SJR Q1The Journal of Chemical Physics

Using extrinsic probes to study a host system relies on the probes’ ability to accurately report the host properties under study. Probes have long been used to characterize dynamic heterogeneity, the phenomenon in which a liquid near its glass transition exhibits distinct dynamics as a function of time and position, with molecules within nanometers of each other exhibiting dynamics that may vary by orders of magnitude. The spatial and temporal characteristics of dynamic heterogeneity demand the

Materials ChemistryMaterials Science

Research Areas

Materials ChemistryElectrical and Electronic EngineeringAtomic and Molecular Physics, and OpticsOrganic ChemistrySurfaces, Coatings and FilmsBiomaterials

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