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Jeon Jae-woong

Ewha Womans University · 材料科学

研究室紹介

Professor Jeon Jae-woong's research lab specializes in the design and functionalization of metal-organic frameworks (MOFs) and other porous materials for advanced applications in energy, catalysis, and smart responsive systems. The lab focuses on integrating stimuli-responsive molecules—particularly photochromic compounds—into MOF frameworks to achieve dynamic control over molecular and material properties through external triggers like light or humidity. A key research direction involves engineering proton-conducting MOFs using acidic or zwitterionic guests to enable superprotonic conductivity, crucial for fuel cell and electrochemical technologies. The lab also pioneers innovative post-synthetic modification strategies, including covalent functionalization and metalation, to tailor active sites and enhance performance in heterogeneous catalysis and sensing.

metal-organic frameworksphotochromic materialsproton conductivitystimuli-responsive materialspost-synthetic modification

Research Overview

Papers
74
Total Citations
1,002
Papers (5y)
54
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
54total
2022
2023
2024
2025
2026
Citations per year (5y)
658total
20222023202420252026

Selected Papers

15
1
Review|107 citations·2022
Metal–Photoswitch Friendship: From Photochromic Complexes to Functional Materials
Grace C. Thaggard, Johanna Haimerl, Kyoung Chul Park, Jaewoong Lim, Roland A. Fischer, Buddhima K. P. Maldeni Kankanamalage, Brandon J. Yarbrough, Gina R. Wilson, Natalia B. Shustova
SJR Q1Journal of the American Chemical Society

Cooperative metal-photoswitch interfaces comprise an application-driven field which is based on strategic coupling of metal cations and organic photochromic molecules to advance the behavior of both components, resulting in dynamic molecular and material properties controlled through external stimuli. In this Perspective, we highlight the ways in which metal-photoswitch interplay can be utilized as a tool to modulate a system's physicochemical properties and performance in a variety of structura

Materials ChemistryMaterials Science
2
Article|106 citations·2021
Superprotonic Conductivity of MOF‐808 Achieved by Controlling the Binding Mode of Grafted Sulfamate
Amitosh Sharma, Jaewoong Lim, Seok Jeong, Somi Won, Junmo Seong, Seonghwan Lee, Yung Sam Kim, Seung Bin Baek, Myoung Soo Lah
SJR Q1Angewandte Chemie International Edition

Abstract A metal–organic framework (MOF) having superprotonic conductivity, MOF‐808, is prepared by modulating the binding mode of the sulfamate (SA) moieties grafted onto the metal clusters. The activation of the SA‐grafted MOF‐808 at 150 °C changes the binding mode of the grafted SA from monodentate to bridging bidentate, thus converting the neutral amido (‐S−NH 2 ) moiety of the grafted SA to the more acidic cationic sulfiliminium (‐S=NH 2 + ) moiety. Further, the acidic sulfiliminium moiety

Inorganic ChemistryChemistry
3
Article|81 citations·2021
Synthetic multiscale design of nanostructured Ni single atom catalyst for superior CO2 electroreduction
Gyoung Hwa Jeong, Ying Chuan Tan, Jun Tae Song, Gil‐Yong Lee, Ho Jin Lee, Jaewoong Lim, Hu Young Jeong, Somi Won, Jihun Oh, Sang Ouk Kim
SJR Q1Chemical Engineering Journal
Renewable Energy, Sustainability and the EnvironmentEnergy
4
Article|63 citations·2022
Strategies for designing metal–organic frameworks with superprotonic conductivity
Amitosh Sharma, Jaewoong Lim, Myoung Soo Lah
SJR Q1Coordination Chemistry Reviews
Inorganic ChemistryChemistry
5
Article|62 citations·2021
Amine‐Tagged Fragmented Ligand Installation for Covalent Modification of MOF‐74
Jaewoong Lim, Seonghwan Lee, Hyeonbin Ha, Junmo Seong, Seok Jeong, Min Kim, Seung Bin Baek, Myoung Soo Lah
SJR Q1Angewandte Chemie International Edition

Abstract MOF‐74 is one of the most explored metal–organic frameworks (MOFs), but its functionalization is limited to the dative post‐synthetic modification (PSM) of the monodentate solvent site. Owing to the nature of the organic ligand and framework structure of MOF‐74, the covalent PSM of MOF‐74 is very demanding. Herein, we report, for the first time, the covalent PSM of amine‐tagged defective Ni‐MOF‐74, which is prepared by de novo solvothermal synthesis by using aminosalicylic acid as a fun

Inorganic ChemistryChemistry
6
Review|51 citations·2024
Switching from Molecules to Functional Materials: Breakthroughs in Photochromism With MOFs
Grace C. Thaggard, Buddhima K. P. Maldeni Kankanamalage, Kyoung Chul Park, Jaewoong Lim, Molly A. Quetel, Mamata Naik, Natalia B. Shustova
SJR Q1Advanced MaterialsOA

Photochromic materials with properties that can be dynamically tailored as a function of external stimuli are a rapidly expanding field driven by applications in areas ranging from molecular computing, nanotechnology, or photopharmacology to programable heterogeneous catalysis. Challenges arise, however, when translating the rapid, solution-like response of stimuli-responsive moieties to solid-state materials due to the intermolecular interactions imposed through close molecular packing in bulk

Materials ChemistryMaterials Science
7
Article|48 citations·2023
Breaking the photoswitch speed limit
Grace C. Thaggard, Kyoung Chul Park, Jaewoong Lim, Buddhima K. P. Maldeni Kankanamalage, Johanna Haimerl, Gina R. Wilson, Margaret K. McBride, Kelly L. Forrester, Esther R. Adelson, Virginia S. Arnold, Shehani T. Wetthasinghe, Vitaly A. Rassolov
SJR Q1Nature CommunicationsOA

The forthcoming generation of materials, including artificial muscles, recyclable and healable systems, photochromic heterogeneous catalysts, or tailorable supercapacitors, relies on the fundamental concept of rapid switching between two or more discrete forms in the solid state. Herein, we report a breakthrough in the "speed limit" of photochromic molecules on the example of sterically-demanding spiropyran derivatives through their integration within solvent-free confined space, allowing for en

Materials ChemistryMaterials Science
8
Article|39 citations·2023
Superprotonic Conductivity of MOFs Confining Zwitterionic Sulfamic Acid as Proton Source and Conducting Medium
Amitosh Sharma, Jaewoong Lim, Seonghwan Lee, Seungwan Han, Junmo Seong, Seung Bin Baek, Myoung Soo Lah
SJR Q1Angewandte Chemie International Edition

Abstract A few metal–organic frameworks (MOFs), which typically use strong acids as proton sources, display superprotonic conductivity (≈10 −1 S cm −1 ); however, they are rare due to the instability of MOFs in highly acidic conditions. For the first time, we report superprotonic conductivity using a moderately acidic guest, zwitterionic sulfamic acid (HSA), which is encapsulated in MOF‐808 and MIL‐101. HSA acts not only as a proton source but also as a proton‐conducting medium due to its extens

Inorganic ChemistryChemistry
9
Article|38 citations·2023
Cooperative and Orthogonal Switching in the Solid State Enabled by Metal‐Organic Framework Confinement Leading to a Thermo‐Photochromic Platform
Gina R. Wilson, Kyoung Chul Park, Grace C. Thaggard, Corey R. Martin, Austin R. Hill, Johanna Haimerl, Jaewoong Lim, Buddhima K. P. Maldeni Kankanamalage, Brandon J. Yarbrough, Kelly L. Forrester, Roland A. Fischer, Perry J. Pellechia
SJR Q1Angewandte Chemie International EditionOA

Cooperative behavior and orthogonal responses of two classes of coordinatively integrated photochromic molecules towards distinct external stimuli were demonstrated on the first example of a photo-thermo-responsive hierarchical platform. Synergetic and orthogonal responses to temperature and excitation wavelength are achieved by confining the stimuli-responsive moieties within a metal-organic framework (MOF), leading to the preparation of a novel photo-thermo-responsive spiropyran-diarylethene b

Materials ChemistryMaterials Science
10
Article|35 citations·2022
Spatial distribution modulation of mixed building blocks in metal-organic frameworks
Seok Jeong, Junmo Seong, Sung Moon, Jaewoong Lim, Seung Bin Baek, Seung Kyu Min, Myoung Soo Lah
SJR Q1Nature CommunicationsOA

The placement of mixed building blocks at precise locations in metal-organic frameworks is critical to creating pore environments suitable for advanced applications. Here we show that the spatial distribution of mixed building blocks in metal-organic frameworks can be modulated by exploiting the different temperature sensitivities of the diffusion coefficients and exchange rate constants of the building blocks. By tuning the reaction temperature of the forward linker exchange from one metal-orga

Inorganic ChemistryChemistry
11
Article|32 citations·2021
Transformation of a Cluster-Based Metal–Organic Framework to a Rod Metal–Organic Framework
Somi Won, Seok Jeong, Dongwook Kim, Junmo Seong, Jaewoong Lim, Dohyun Moon, Seung Bin Baek, Myoung Soo Lah
SJR Q1Chemistry of Materials

A highly stable and rigid rod metal–organic framework (MOF) is obtained by the single-crystal-to-single-crystal transformation of a Zr6 cluster-based MOF with highly interconnected but geometrically mismatched building blocks. The transformation results in a significant framework contraction, which comes from the formation of infinite chains of carboxylate- and aquo-linked Zr6 clusters as a one-dimensional rod secondary building unit. The permanently microporous rod MOF is stable in a variety of

Inorganic ChemistryChemistry
12
Article|32 citations·2022
Capture Instead of Release: Defect-Modulated Radionuclide Leaching Kinetics in Metal–Organic Frameworks
Kyoung Chul Park, Corey R. Martin, Gabrielle A. Leith, Grace C. Thaggard, Gina R. Wilson, Brandon J. Yarbrough, Buddhima K. P. Maldeni Kankanamalage, Preecha Kittikhunnatham, Abhijai Mathur, Isak Jatoi, Mackenzie A. Manzi, Jaewoong Lim
SJR Q1Journal of the American Chemical Society

Comparison of defect-controlled leaching-kinetics modulation of metal-organic frameworks (MOFs) and porous functionalized silica-based materials was performed on the example of a radionuclide and radionuclide surrogate for the first time, revealing an unprecedented readsorption phenomenon. On a series of zirconium-based MOFs as model systems, we demonstrated the ability to capture and retain >99% of the transuranic <sup>241</sup>Am radionuclide after 1 week of storage. We report the possibility

Inorganic ChemistryChemistry
13
Article|30 citations·2022
Confinement‐Driven Photophysics in Hydrazone‐Based Hierarchical Materials
Grace C. Thaggard, Gabrielle A. Leith, Daniil Sosnin, Corey R. Martin, Kyoung Chul Park, Margaret K. McBride, Jaewoong Lim, Brandon J. Yarbrough, Buddhima K. P. Maldeni Kankanamalage, Gina R. Wilson, Austin R. Hill, Mark D. Smith
SJR Q1Angewandte Chemie International Edition

Confinement-imposed photophysics was probed for novel stimuli-responsive hydrazone-based compounds demonstrating a conceptual difference in their behavior within 2D versus 3D porous matrices for the first time. The challenges associated with photoswitch isomerization arising from host interactions with photochromic compounds in 2D scaffolds could be overcome in 3D materials. Solution-like photoisomerization rate constants were realized for sterically demanding hydrazone derivatives in the solid

Materials ChemistryMaterials Science
14
Article|28 citations·2022
f‐block MOFs: A Pathway to Heterometallic Transuranics
Kyoung Chul Park, Preecha Kittikhunnatham, Jaewoong Lim, Grace C. Thaggard, Yuan Liu, Corey R. Martin, Gabrielle A. Leith, Donald J. Toler, An T. Ta, Nancy Birkner, Ingrid Lehman‐Andino, Alejandra Hernandez-Jimenez
SJR Q1Angewandte Chemie International EditionOA

Abstract A novel series of heterometallic f ‐block‐frameworks including the first examples of transuranic heterometallic 238 U/ 239 Pu‐metal–organic frameworks (MOFs) and a novel monometallic 239 Pu‐analog are reported. In combination with theoretical calculations, we probed the kinetics and thermodynamics of heterometallic actinide(An)‐MOF formation and reported the first value of a U‐to‐Th transmetallation rate. We concluded that formation of uranyl species could be a driving force for solid‐s

Materials ChemistryMaterials Science
15
Article|27 citations·2023
Post‐synthetic modifications in metal–organic frameworks for high proton conductivity
Amitosh Sharma, Seonghwan Lee, Jaewoong Lim, Myoung Soo Lah
SJR Q2Bulletin of the Korean Chemical SocietyOA

Abstract A myriad of metal ions and organic linkers can be used to produce metal–organic frameworks (MOFs) with varied functionalities, porosities, and dimensionalities. Such diversity has garnered significant research interest, particularly in leveraging MOFs as proton conductors for fuel cells. One effective approach involves introducing guest molecules into MOF pores. These molecules serve either as proton carriers or as proton‐conducting media through potential hydrogen bonding networks. Thi

Inorganic ChemistryChemistry

Research Areas

Materials ChemistryInorganic ChemistryElectrical and Electronic EngineeringOcean EngineeringRenewable Energy, Sustainability and the EnvironmentElectronic, Optical and Magnetic Materials

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