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Hak-hyun Kim

Ewha Womans University · Environmental Science

About the Lab

Professor Hak-hyun Kim's research lab specializes in the development and application of advanced functional materials for environmental remediation and water treatment. The lab focuses on designing nanomaterials—such as bimetallic nanoparticles, metal phosphides, and layered double hydroxides—that enable efficient degradation of organic pollutants and removal of emerging contaminants like PFAS. Key research directions include catalytic activation of oxidants (e.g., H₂O₂ and persulfates), in situ generation of reactive radicals, and the engineering of microfluidic systems for precise fluid control. The lab integrates in situ spectroscopic techniques and surface characterization to unravel reaction mechanisms at the molecular level.

environmental catalysisnanomaterials for water treatmentradical-based oxidationPFAS removalmicrofluidic systems

Research Overview

Papers
42
Total Citations
1,088
Papers (5y)
16
Primary Field
Environmental Science

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
16total
2021
2023
2024
2025
2026
Citations per year (5y)
250total
20212023202420252026

Selected Papers

15
1
Article|132 citations·2019
Spontaneous Generation of H2O2 and Hydroxyl Radical through O2 Reduction on Copper Phosphide under Ambient Aqueous Condition
Hyejin Kim, Jonghun Lim, Seonggyu Lee, Hak–Hyeon Kim, Changha Lee, Jinwoo Lee, Wonyong Choi
SJR Q1Environmental Science & Technology

Copper phosphide (Cu <sub>x</sub>P) was synthesized and tested for its reactivity for generating H<sub>2</sub>O<sub>2</sub> through spontaneous reduction of dioxygen under ambient aqueous condition. The in situ generated H<sub>2</sub>O<sub>2</sub> was subsequently decomposed to generate OH radicals, which enabled the degradation of organic compounds in water. The oxygen reduction reaction proceeded along with the concurrent oxidation of phosphide to phosphate, then copper ions and phosphate ions

Renewable Energy, Sustainability and the EnvironmentEnergy
2
Article|124 citations·2019
Novel activation of peroxymonosulfate by biochar derived from rice husk toward oxidation of organic contaminants in wastewater
Phạm Thị Mai Hương, Ji-Tae Kim, T.M. Al Tahtamouni, Nguyen Le Minh Tri, Hak–Hyeon Kim, Kyung Hwa Cho, Changha Lee
SJR Q1Journal of Water Process EngineeringOA
Water Science and TechnologyEnvironmental Science
3
Article|118 citations·2017
Chloride-enhanced oxidation of organic contaminants by Cu(II)-catalyzed Fenton-like reaction at neutral pH
Hongshin Lee, Juhee Seong, Kimyeong Lee, Hak–Hyeon Kim, Jaemin Choi, Jae‐Hong Kim, Changha Lee
SJR Q1Journal of Hazardous MaterialsOA
Water Science and TechnologyEnvironmental Science
4
Article|90 citations·2020
Activation of Hydrogen Peroxide by a Titanium Oxide-Supported Iron Catalyst: Evidence for Surface Fe(IV) and Its Selectivity
Hak–Hyeon Kim, Hongshin Lee, Donghyun Lee, Young‐Jin Ko, Heesoo Woo, Jaesang Lee, Changha Lee, Anh Le‐Tuan Pham
SJR Q1Environmental Science & Technology

Iron immobilized on supports such as silica, alumina, titanium oxide, and zeolite can activate hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) into strong oxidants. However, the role of the support and the nature of the oxidants produced in this process remain elusive. This study investigated the activation of H<sub>2</sub>O<sub>2</sub> by a TiO<sub>2</sub>-supported catalyst (FeTi-ox). Characterizing the catalyst surface in situ using X-ray absorption spectroscopy (XAS), together with X-ray phot

Water Science and TechnologyEnvironmental Science
5
Article|72 citations·2021
Nonradical activation of peroxymonosulfate by hematite for oxidation of organic compounds: A novel mechanism involving high-valent iron species
Hyeonseok Kang, Donghyun Lee, Kimyeong Lee, Hak–Hyeon Kim, Hongshin Lee, Min Sik Kim, Changha Lee
SJR Q1Chemical Engineering Journal
Water Science and TechnologyEnvironmental Science
6
Article|69 citations·2015
Polyphosphate-enhanced production of reactive oxidants by nanoparticulate zero-valent iron and ferrous ion in the presence of oxygen: Yield and nature of oxidants
Hak–Hyeon Kim, Hongshin Lee, Hyung-Eun Kim, Jiwon Seo, Seok Won Hong, Jeong‐Yong Lee, Changha Lee
SJR Q1Water Research
Biomedical EngineeringEngineering
7
Review|63 citations·2023
Recovery of rare-earth and radioactive elements from contaminated water through precipitation: A review
Byung-Moon Jun, Hak–Hyeon Kim, Hojung Rho, Jiwon Seo, Jin-Woo Jeon, Seong‐Nam Nam, Chang Min Park, Yeomin Yoon
SJR Q1Chemical Engineering Journal
Inorganic ChemistryChemistry
8
Article|55 citations·2019
Nickel–Nickel oxide nanocomposite as a magnetically separable persulfate activator for the nonradical oxidation of organic contaminants
Hak–Hyeon Kim, Donghyun Lee, Jaemin Choi, Hongshin Lee, Jiwon Seo, Tae‐Wan Kim, Kimyeong Lee, Anh Le‐Tuan Pham, Changha Lee
SJR Q1Journal of Hazardous Materials
Water Science and TechnologyEnvironmental Science
9
Article|50 citations·2011
Elastomeric membrane valves in a disc
Hyundoo Hwang, Hak–Hyeon Kim, Yoon‐Kyoung Cho
SJR Q1Lab on a Chip

We present elastomeric membrane valves integrated into a centrifugal microfluidic platform for precise control of fluid on a disc. The amount of the fluid passing through the valves, which depends on the rotating speed of the disc and the membrane thickness, has been characterized, and could be precisely controlled by tuning the disc motion.

Biomedical EngineeringEngineering
10
Article|41 citations·2018
Chemistry of persulfates for the oxidation of organic contaminants in water
Changha Lee, Hak–Hyeon Kim, Noh-Back Park
Scholarworks@UNIST (Ulsan National Institute of Science and Technology)

Persulfates (i.e., peroxymonosulfate and peroxydisulfate) are capable of oxidizing a wide range of organic compounds via direct reactions, as well as by indirect reactions by the radical intermediates. In aqueous solution, persulfates undergo self-decomposition, which is accelerated by thermal, photochemical and metal-catalyzed methods, which usually involve the generation of various radical species. The chemistry of persulfates has been studied since the early twentieth century. However, its en

Water Science and TechnologyEnvironmental Science
11
Article|41 citations·2019
Differential Microbicidal Effects of Bimetallic Iron–Copper Nanoparticles on Escherichia coli and MS2 Coliphage
Hyung-Eun Kim, Hye-Jin Lee, Min Sik Kim, Tae-Wan Kim, Hongshin Lee, Hak–Hyeon Kim, Min Chul Cho, Seok Won Hong, Changha Lee
SJR Q1Environmental Science & Technology

Bimetallic iron-copper nanoparticles (Fe/Cu-NPs) were synthesized by a single-pot surfactant-free method in aqueous solution [via the reduction of ferrous ion to zerovalent iron nanoparticles (Fe-NPs) and the subsequent copper-coating by metal ion exchange]. The produced Fe/Cu-NPs formed aggregates of spherical nanoparticles (approximately 30-70 nm) of Fe-Cu core-shell structures with 11 wt % copper content. The microbicidal effects of Fe/Cu-NPs were explored on Escherichia coli and MS2 coliphag

Materials ChemistryMaterials Science
12
Article|40 citations·2017
Oxidation of microcystin-LR by ferrous-tetrapolyphosphate in the presence of oxygen and hydrogen peroxide
Min Sik Kim, Hak–Hyeon Kim, Kimyeong Lee, Hye-Jin Lee, Changha Lee
SJR Q1Water Research
Environmental ChemistryEnvironmental Science
13
Article|39 citations·2021
Bicarbonate-enhanced generation of hydroxyl radical by visible light-induced photocatalysis of H2O2 over WO3: Alteration of electron transfer mechanism
Jaemin Choi, Hak–Hyeon Kim, Kimyeong Lee, Na Chen, Min Sik Kim, Jiwon Seo, Donghyun Lee, Haein Cho, Hyoung−il Kim, Jaesang Lee, Hongshin Lee, Changha Lee
SJR Q1Chemical Engineering Journal
Renewable Energy, Sustainability and the EnvironmentEnergy
14
Article|28 citations·2024
Removal of PFAS by hydrotalcite: Adsorption mechanisms, effect of adsorbent aging, and thermal regeneration
Hak–Hyeon Kim, Paul G. Koster van Groos, Yuwei Zhao, Anh Le‐Tuan Pham
SJR Q1Water ResearchOA

Layered double hydroxides (LDH) have been shown to be effective adsorbents, but their utility for the treatment of per- and polyfluoroalkyl substances (PFAS) in water has not been fully explored. In this study, the adsorption of 9 PFAS on hydrotalcite (HT), a type of LDH, was investigated using reaction solutions with environmentally relevant PFAS concentrations. The adsorption of individual PFAS by HT depended upon a range of factors, including the temperature used to pre-treat (i.e., calcine)

Materials ChemistryMaterials Science
15
Article|20 citations·2020
Hand-ground fullerene-nanodiamond composite for photosensitized water treatment and photodynamic cancer therapy
Hongshin Lee, Jung Seok Lee, Kyle J. Moor, Hyoung−il Kim, Sang-Ryoung Kim, Geondu Gim, Jaesang Lee, Hak–Hyeon Kim, Tarek M. Fahmy, Jae‐Hong Kim, Changha Lee
SJR Q1Journal of Colloid and Interface Science
Materials ChemistryMaterials Science

Research Areas

Water Science and TechnologyRenewable Energy, Sustainability and the EnvironmentMaterials ChemistryAerospace EngineeringEnvironmental ChemistryBiomedical Engineering

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