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Jong-Hoon Kang

Pohang University of Science and Technology · 材料科学

研究室紹介

Professor Jong-Hoon Kang's research lab specializes in the design and synthesis of advanced functional materials, with a strong focus on porous materials such as zeolites, SAPOs, and germanosilicates for catalytic applications—particularly in the methanol-to-olefins (MTO) process. The lab also pioneers innovative dry-processing techniques for lithium-ion battery electrodes, emphasizing eco-friendly manufacturing and enhanced electrochemical performance through novel conductive additives and polymer binders. Their work bridges materials chemistry, catalysis, and energy storage, targeting sustainable and high-performance solutions for clean energy technologies.

porous materialscatalysisenergy storagedry processingbattery materials

Research Overview

Papers
94
Total Citations
3,027
Papers (5y)
44
Primary Field
材料科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
44total
2022
2023
2024
2025
2026
Citations per year (5y)
552total
20222023202420252026

Selected Papers

15
1
Article|246 citations·2015
Hidden Second Oxidation Step of Hummers Method
Jong Hun Kang, Tae‐Hoon Kim, Jaeyoo Choi, Jisoo Park, Yern Seung Kim, Mi Se Chang, Haesol Jung, Kyung Tae Park, Seung Jae Yang, Chong Rae Park
SJR Q1Chemistry of MaterialsOA

High Resolution Image Download MS PowerPoint Slide Hummers method has been used for 50 years to prepare graphene oxide (GO) by oxidizing graphite using Mn 2 O 7 . In this work, a new angle on Hummers method is described. The oxidation procedure before the addition of water, which has been respected as the main oxidation step of Hummers method, is named step I oxidation, and the widely ignored further oxidation step after the addition of water is named step II oxidation . The chemical and structu

Materials ChemistryMaterials Science
2
Article|131 citations·2019
Cage-Defining Ring: A Molecular Sieve Structural Indicator for Light Olefin Product Distribution from the Methanol-to-Olefins Reaction
Jong Hun Kang, Faisal H. Alshafei, Stacey I. Zones, Mark E. Davis
SJR Q1ACS Catalysis

The methanol-to-olefins (MTO) process produces high-value-added light olefins from nonpetroleum sources. Acidic zeotypes containing cages bounded by 8-ring (small-pore) windows can effectively catalyze the MTO reaction, since their cages can accommodate the necessary aromatic intermediates that produce the light olefin products that escape. While progress on the mechanisms of the MTO reaction continues, zeotype structure–reaction property relationships have yet to be elucidated. Here, we report

Inorganic ChemistryChemistry
3
Article|77 citations·2016
Synthesis and Characterization of CIT-13, a Germanosilicate Molecular Sieve with Extra-Large Pore Openings
Jong Hun Kang, Dan Xie, Stacey I. Zones, Stef Smeets, Lynne B. McCusker, Mark E. Davis
SJR Q1Chemistry of Materials

The synthesis of the germanosilicate CIT-13, a molecular sieve that is the first to have a two-dimensional (2D) pore system possessing pores that are bounded by 14- and 10-rings, is accomplished using a family of monoquaternary, benzyl-imidazolium organic structure-directing agents (OSDAs) in aqueous media containing fluoride. CIT-13 is prepared using either hydrogen fluoride (HF) or ammonium fluoride (NH 4 F). The structure refinement suggests that most of the Ge atoms are located in the d 4 r

Inorganic ChemistryChemistry
4
Article|69 citations·2023
Ozone-Treated Carbon Nanotube as a Conductive Agent for Dry-Processed Lithium-Ion Battery Cathode
Hyuntae Kim, Ji Hyeon Lim, Taegeun Lee, Jiwoo An, Hyunjin Kim, Hannah Song, Hyeonha Lee, Jang Wook Choi, Jong Hun Kang
SJR Q1ACS Energy Letters

The solvent-free manufacturing process for battery electrodes has gathered increased scientific interest due to its cost reduction, eco-friendliness, and ability to enhance electrode density. Carbon nanotubes (CNTs) are anticipated to improve battery performance, owing to their exceptional electrical conductivity and unique one-dimensional morphology. In this study, we demonstrate that the integration of ozone treatment for CNTs can further enhance the electrochemical performance of high-loading

Electrical and Electronic EngineeringEngineering
5
Article|58 citations·2024
Towards high-performance and robust anion exchange membranes (AEMs) for water electrolysis: Super-acid-catalyzed synthesis of AEMs
Geun Woong Ryoo, Sun Hwa Park, Ki Chang Kwon, Jong Hun Kang, Ho Won Jang, Min Sang Kwon
SJR Q1Journal of Energy Chemistry
Electrical and Electronic EngineeringEngineering
6
Article|51 citations·2017
Further Studies on How the Nature of Zeolite Cavities That Are Bounded by Small Pores Influences the Conversion of Methanol to Light Olefins
Jong Hun Kang, Raimund Walter, Dan Xie, Tracy M. Davis, Cong‐Yan Chen, Mark E. Davis, Stacey I. Zones
SJR Q2ChemPhysChemOA

A series of small-pore zeolites are synthesized and investigated as catalysts for the methanol-to-olefins (MTO) reaction. Small-pore zeolites SSZ-13, SSZ-16, SSZ-27, SSZ-28, SSZ-52, SSZ-98, SSZ-99, SSZ-104, SSZ-105 and an ITQ-3-type material are synthesized, and the results from their use as catalytic materials in the MTO reaction compared to those obtained from SAPO-34. The production of propane that tends to correlate with catalytic material lifetime (higher initial propane yields lead to shor

Inorganic ChemistryChemistry
7
Article|47 citations·2024
Non-Electroconductive Polymer Coating on Graphite Mitigating Electrochemical Degradation of PTFE for a Dry-Processed Lithium-Ion Battery Anode
Taegeun Lee, Jiwoo An, Woo Jun Chung, Hyuntae Kim, Yongil Cho, Hannah Song, Hyeonha Lee, Jong Hun Kang, Jang Wook Choi
SJR Q1ACS Applied Materials & Interfaces

Polytetrafluoroethylene (PTFE)-based dry process for lithium-ion batteries is gaining attention as a battery manufacturing scheme can be simplified with drastically reducing environmental damage. However, the electrochemical instability of PTFE in a reducing environment has hampered the realization of the high-performance dry-processed anode. In this study, we present a non-electroconductive and highly ionic-conductive polymer coating on graphite to mitigate the electrochemical degradation of th

Electrical and Electronic EngineeringEngineering
8
Article|22 citations·2019
Transformation of Extra-Large Pore Germanosilicate CIT-13 Molecular Sieve into Extra-Large Pore CIT-5 Molecular Sieve
Jong Hun Kang, Dan Xie, Stacey I. Zones, Mark E. Davis
SJR Q1Chemistry of Materials

The 14- and 10-membered ring germanosilicate Ge-CIT-13 (*CTH) is transformed into the 14-membered ring germanosilicate Ge-CIT-5 (CFI). The transformation can occur at room temperature but requires the presence of adsorbed water. The *CTH-to-CFI transformation involves rearrangement of germanium-rich double-4-ring units in *CTH to form double-zigzag chains in CFI. The rate of transformation is dependent on the germanium content of the starting Ge-CIT-13 and the humidity of the transforming atmosp

Inorganic ChemistryChemistry
9
Article|22 citations·2024
Tailored Two‐Dimensional Transition Metal Dichalcogenides for Water Electrolysis: Doping, Defect, Phase, and Heterostructure
Ji Hyeon Lim, K Kim, Jong Hun Kang, Ki Chang Kwon, Ho Won Jang
SJR Q2ChemElectroChemOA

Abstract The demand for hydrogen production technology to replace fossil fuels and address the global climate crisis has become one of the most urgent tasks in the modern era. Among the promising breakthroughs, electrochemical water splitting using renewable energy sources offers a path to green hydrogen production that is both feasible and economically viable. However, the current state‐of‐the‐art catalysts for the water‐splitting reaction predominantly rely on scarce and costly noble metals, p

Renewable Energy, Sustainability and the EnvironmentEnergy
10
Article|21 citations·2020
Superconductivity in undoped BaFe 2 As 2 by tetrahedral geometry design
Jong‐Hoon Kang, Jong‐Woo Kim, Philip J. Ryan, Lin Xie, Lu Guo, C. Sundahl, Jonathon Schad, Neil Campbell, Yesusa Collantes, E. E. Hellstrom, M. S. Rzchowski, Chang‐Beom Eom
SJR Q1Proceedings of the National Academy of SciencesOA

Significance The results demonstrated here show superconductivity in the antiferromagnetic BaFe 2 As 2 without chemical substitution, by atomic level control of local structure through epitaxial superlattice design. The interfacial interactions modify the FeAs 4 tetrahedra via systematic control of tetragonal and orthorhombic structures, inducing superconductivity. This indicates structure and dimensionality play an important role in the superconducting properties in Fe-based superconductors, an

Electronic, Optical and Magnetic MaterialsMaterials Science
11
Article|17 citations·2021
Further Investigations of Racemic and Chiral Molecular Sieves of the STW Topology
Jong Hun Kang, Lynne B. McCusker, Michael W. Deem, Christian Baerlocher, Mark E. Davis
SJR Q1Chemistry of MaterialsOA

Large single crystals of pure-silica STW-type molecular sieves are prepared using 1,2,3,4,5-pentamethylimidazolium (12345PMI) and 2-ethyl-1,3,4-trimethylimidazolium (2E134TMI) as organic structure-directing agents (OSDAs) and α-amino acid additives. The effects of the amount and type of amino acid on the crystallization of pure-silica STW materials are investigated. Room-temperature single-crystal X-ray diffractometry shows that 12345PMI better fits the STW cage than 2E134TMI and is fully consis

Inorganic ChemistryChemistry
12
Article|16 citations·2025
Optimization of low-temperature catalytic cracking of polyolefin waste in open-batch reactors using zeolite beta with controlled intrinsic properties
Hankyeul Kang, Junghwa Yoon, Dongwoo Jun, Ki Hyuk Kang, Insoo Ro, Soo-Hwa Jeong, Jong Hun Kang
SJR Q1Communications EngineeringOA

Environmental problems are worsening due to the complexity in managing plastic waste. Chemical recycling emerges as a pivotal technology that can suppress carbon introduction into the carbon cycle and provide petroleum alternatives for current petrochemical processes. The utilization of zeolites can reduce energy consumption by lowering the operation temperature for pyrolysis. Here, we demonstrate low-temperature catalytic cracking of polyethylene (PE) utilizing an open-batch reactor configurati

Industrial and Manufacturing EngineeringEnvironmental Science
13
Article|16 citations·2024
Exsolved Ru-mediated stabilization of MoO2-Ni4Mo electrocatalysts for anion exchange membrane water electrolysis and unbiased solar-driven saline water splitting
Sang Eon Jun, Shin‐Woo Myeong, Byeong‐Gwan Cho, Jaehyun Kim, So Jeong Park, So Jeong Park, Chiho Kim, Tae Hyung Lee, Sooheyong Lee, Jin Young Kim, Min Sang Kwon, Jong Hun Kang
SJR Q1Applied Catalysis B: Environmental
Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|14 citations·2020
Fluoride-free Synthesis of Germanosilicate CIT-13 and Its Inverse Sigma Transformation To Form CIT-14
Jong Hun Kang, Dan Xie, Stacey I. Zones, Mark E. Davis
SJR Q1Chemistry of Materials

Germanium-containing, extra-large pore molecular sieve CIT-13 is synthesized without the use of fluoride. After the removal of occluded organics, CIT-13 obtained from fluoride-free preparation shows significant differences from CIT-13 samples prepared in the presence of fluoride. CIT-13 prepared using a fluoride-free method is able to undergo inverse sigma transformation to yield CIT-14 and transforms into a CIT-5-type germanosilicate much faster than Ge-CIT-13 of similar Si/Ge ratios from a flu

Materials ChemistryMaterials Science
15
Article|12 citations·2024
Acid-site control of ZSM-5 zeolites using quaternary ammonium hydroxides for shale gas dehydroaromatization
Yangho Jeong, Yong Hyun Lim, Eun Ji Choi, Hae Won Ryu, Jangeon Roh, Susung Lee, Minkee Choi, Do Heui Kim, Jong Hun Kang
SJR Q1Chemical Engineering Journal
Inorganic ChemistryChemistry

Research Areas

Inorganic ChemistryElectronic, Optical and Magnetic MaterialsMaterials ChemistryElectrical and Electronic EngineeringAtomic and Molecular Physics, and OpticsCondensed Matter Physics

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