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Moo Hyun Oh

Yonsei University · Chemistry

About the Lab

Professor Moo Hyun Oh's research lab specializes in the design, synthesis, and functional transformation of metal-organic frameworks (MOFs) and coordination polymers with tailored structures and properties. The lab focuses on advanced MOF architectures such as core-shell, hollow, and heterostructured MOFs through controlled growth, etching, and ion-exchange strategies. Key research directions include the development of multifunctional nanomaterials for catalysis, energy applications, and environmental remediation via precise control of morphology, composition, and porosity.

metal-organic frameworksMOF heterostructurescoordination polymersnanomaterials synthesismorphology control

Research Overview

Papers
154
Total Citations
6,851
Papers (5y)
24
Primary Field
Chemistry

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
24total
2022
2023
2024
2025
2026
Citations per year (5y)
287total
20222023202420252026

Selected Papers

15
1
Article|627 citations·2005
Chemically tailorable colloidal particles from infinite coordination polymers
Moonhyun Oh, Chad A. Mirkin
SJR Q1Nature
Inorganic ChemistryChemistry
2
Article|283 citations·2019
Cobalt- and nitrogen-codoped porous carbon catalyst made from core–shell type hybrid metal–organic framework (ZIF-L@ZIF-67) and its efficient oxygen reduction reaction (ORR) activity
Heejun Park, Sojin Oh, Sujeong Lee, Sora Choi, Moonhyun Oh
SJR Q1Applied Catalysis B: Environmental
Renewable Energy, Sustainability and the EnvironmentEnergy
3
Article|283 citations·2011
Advanced fabrication of metal–organic frameworks: template-directed formation of polystyrene@ZIF-8 core–shell and hollow ZIF-8 microspheres
Hee Jung Lee, Won Cho, Moonhyun Oh
SJR Q1Chemical Communications

The conjunction of porous ZIF-8 with polystyrene spheres is demonstrated to induce the formation of polystyrene@ZIF-8 core-shell structures. A subsequent etching process on polystyrene@ZIF-8 core-shells to remove polystyrene cores results in a unique hollow ZIF-8.

Inorganic ChemistryChemistry
4
Article|267 citations·2016
Isotropic and Anisotropic Growth of Metal–Organic Framework (MOF) on MOF: Logical Inference on MOF Structure Based on Growth Behavior and Morphological Feature
Sora Choi, Taeho Kim, Hoyeon Ji, Hee Jung Lee, Moonhyun Oh
SJR Q1Journal of the American Chemical Society

The growth of one metal-organic framework (MOF) on another MOF for constructing a heterocompositional hybrid MOF is an interesting research topic because of the curiosity regarding the occurrence of this phenomenon and the value of hybrid MOFs as multifunctional materials or routes for fine-tuning MOF properties. In particular, the anisotropic growth of MOF on MOF is fascinating for the development of MOFs possessing atypical shapes and heterostructures or abnormal properties. Herein, we clarify

Inorganic ChemistryChemistry
5
Article|223 citations·2003
Supramolecular Metal−Organometallic Coordination Networks Based on Quinonoid π-Complexes
Moonhyun Oh, Gene B. Carpenter, Dwight A. Sweigart
SJR Q1Accounts of Chemical Research

The use of organometallic pi-complexes in the coordination-directed self-assembly of polymeric structures is a new area with many potential applications. Supramolecular metal-organometallic coordination networks (MOMNs), which are described herein, consist of metal ion or metal cluster nodes connected by bifunctional "organometalloligands" that serve as spacers. The organometalloligand utilized in this work is the stable anionic complex (eta(4)-benzoquinone)Mn(CO)(3)(-) (p-QMTC), which binds thr

Inorganic ChemistryChemistry
6
Article|210 citations·2011
Coordination polymer nanorods of Fe-MIL-88B and their utilization for selective preparation of hematite and magnetite nanorods
Won Cho, Seungjin Park, Moonhyun Oh
SJR Q1Chemical Communications

Coordination polymer nanorods are synthesized from the hexagonal 3D structure of Fe-MIL-88B. Subsequently, hematite (α-Fe(2)O(3)) and magnetite (Fe(3)O(4)) nanorods are selectively prepared by controlling the calcination conditions of coordination polymer nanorods.

Inorganic ChemistryChemistry
7
Article|201 citations·2006
Ion Exchange as a Way of Controlling the Chemical Compositions of Nano‐ and Microparticles Made from Infinite Coordination Polymers
Moonhyun Oh, Chad A. Mirkin
SJR Q1Angewandte Chemie International EditionOA

Ion balls: The composition of nano- and microparticles made from infinite coordination polymers can be chemically transformed through ion-exchange reactions without substantially changing the particle size and morphology. This approach is a straightforward and useful way of creating one precursor set of particles whose composition can be controllably transformed into that of a new set of compounds with different properties.

Inorganic ChemistryChemistry
8
Article|167 citations·2019
Atypical Hybrid Metal–Organic Frameworks (MOFs): A Combinative Process for MOF‐on‐MOF Growth, Etching, and Structure Transformation
Sujeong Lee, Sojin Oh, Moonhyun Oh
SJR Q1Angewandte Chemie International Edition

The structural, compositional, and morphological features of metal-organic frameworks (MOFs) govern their properties and applications. Construction of hybrid MOFs with complicated structures, components, or morphologies is significant for the development of well-organized MOFs. An advanced route is reported for construction of atypical hybrid MOFs with unique morphologies and complicated components: 1) MOF-on-MOF growth of a 3D zeolitic imidazolate framework (ZIF) on a ZIF-L template, 2) etching

Inorganic ChemistryChemistry
9
Article|160 citations·2020
Tip-To-Middle Anisotropic MOF-On-MOF Growth with a Structural Adjustment
Gihyun Lee, Sujeong Lee, Sojin Oh, Dooyoung Kim, Moonhyun Oh
SJR Q1Journal of the American Chemical Society

Well-organized construction of hybrid metal-organic frameworks (MOFs) with complicated structures or components is a great importance because of their potential usefulness. In this regard, the conjugation of more than two MOFs, which have dissimilar components and/or structures, is a smart strategy for the production of hybrid MOFs. MOF-on-MOF growth is fundamental for the conjugation of two MOFs and should be deeply understood for the finely controlled conjugation and for the formation of well-

Inorganic ChemistryChemistry
10
Article|155 citations·2014
Dual Changes in Conformation and Optical Properties of Fluorophores within a Metal–Organic Framework during Framework Construction and Associated Sensing Event
Won Cho, Hee Jung Lee, Goeun Choi, Sora Choi, Moonhyun Oh
SJR Q1Journal of the American Chemical Society

Microsized chemosensor particle (CPP-16, CPP means coordination polymer particle), which is made from a metal-organic framework (MOF), is synthesized using pyrene-functionalized organic building block. This building block contains three important parts, a framework construction part, a Cu(2+) detection part, and a fluorophore part. PXRD studies have revealed that CPP-16 has a 3D cubic structure of MOF-5. During both MOF formation and sensing event, fluorophores within CPP-16 undergo dual changes

Inorganic ChemistryChemistry
11
Article|153 citations·2011
Multi Ball‐In‐Ball Hybrid Metal Oxides
Won Cho, Yun Hee Lee, Hee Jung Lee, Moonhyun Oh
SJR Q1Advanced Materials

A straightforward strategy for the synthesis of composition-tunable hybrid metal oxide particles with a unique multi ball-in-ball structure has been demonstrated. The systems are logically formulated and prepared using the following processes: i) coordination polymer particles (CPPs) are prepared using a precipitation method, ii) a cation exchange reaction is used to effect composition change, and iii) a final calcination process of CPPs is use to obtain the metal oxides. Detailed facts of impor

Inorganic ChemistryChemistry
12
Article|153 citations·2017
Construction of flexible metal–organic framework (MOF) papers through MOF growth on filter paper and their selective dye capture
Jeehyun Park, Moonhyun Oh
SJR Q1Nanoscale

The conjugation of metal-organic frameworks (MOFs) with other materials is an excellent strategy for the production of advanced materials having desired properties and so appropriate applicability. In particular, the integration of MOFs with a flexible paper is expected to form valuable materials in separation technology. Here we report a simple method for the generation of MOF papers through the compact and uniform growth of MOF nanoparticles on the cellulose surface of a carboxymethylated filt

Inorganic ChemistryChemistry
13
Article|136 citations·2019
Synthesis of Bimetallic Conductive 2D Metal–Organic Framework (CoxNiy‐CAT) and Its Mass Production: Enhanced Electrochemical Oxygen Reduction Activity
Hajin Yoon, Sujeong Lee, Sojin Oh, Heejun Park, Sora Choi, Moonhyun Oh
SJR Q1Small

Abstract The development of new electrocatalysts for electrochemical oxygen reduction to replace expensive and rare platinum‐based catalysts is an important issue in energy storage and conversion research. In this context, conductive and porous metal–organic frameworks (MOFs) are considered promising materials for the oxygen reduction reaction (ORR) due to not only their high surface area and well‐developed pores but also versatile structural features and chemical compositions. Herein, the prepa

Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|129 citations·2014
One-pot synthesis of magnetic particle-embedded porous carbon composites from metal–organic frameworks and their sorption properties
Hee Jung Lee, Won Cho, Eunji Lim, Moonhyun Oh
SJR Q1Chemical Communications

Nano- and micro-composites comprised of porous carbon and magnetic particles are prepared by one-step pyrolysis of metal-organic frameworks (MOFs). The porosity and composition of resulting magnetic porous carbons are facilely regulated by altering the pyrolysis temperature and changing the organic building blocks incorporated within the initial MOFs.

Inorganic ChemistryChemistry
15
Article|119 citations·2008
Morphology‐Selective Formation and Morphology‐Dependent Gas‐Adsorption Properties of Coordination Polymer Particles
Hee Jung Lee, Won Cho, Soyoung Jung, Moonhyun Oh
SJR Q1Advanced Materials

Three coordination polymer particles (CPPs) are selectively synthesized using the solvothermal method. All three CPPs are prepared from the same building blocks. However, they form different morphologies, such as elongated hexagons, ellipsoids, and rods. Gas-adsorption measurements on N2, CO2, and H2 reveal that diversely shaped CPPs have different gas-adsorption properties, even though they have the same chemical compositions. Detailed facts of importance to specialist readers are published as

Inorganic ChemistryChemistry

Research Areas

Inorganic ChemistryMaterials ChemistryOrganic ChemistryOncologyRenewable Energy, Sustainability and the EnvironmentMechanical Engineering

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