Min-Kun Kim
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Explore the profile of Min-Kun Kim including associated specialties, affiliations and a list of published articles.
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Articles
10
Citations
33
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0
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Recent Articles
1.
Lee B, Bae J, Go B, Kim M, Park J
Chemosphere
. 2024 Jun;
362:142633.
PMID: 38906187
Given the growing concern over the deployment of toxic chemicals in warfare, the rapid and accurate removal and detection of cyanogen chloride (CK) as a blood agent has become increasingly...
2.
Hyun Y, Oh G, Lee J, Jung H, Kim M, Choi J
J Hazard Mater
. 2024 May;
472:134311.
PMID: 38691989
This study proposes a predictive model for assessing adsorber performance in gas purification processes, specifically targeting the removal of chemical warfare agents (CWAs) using breakthrough curve analysis. Conventional parameter estimation...
3.
Lee J, Seo J, Cho K, Heo J, Jung H, Park S, et al.
ACS Appl Mater Interfaces
. 2022 Jul;
14(28):32522-32532.
PMID: 35793246
With the growing interest in chemical and biological warfare agents (CWAs/BWAs), the focus has shifted toward aerosol protection using protective clothing. However, compared to air-permeable membranes, those with water vapor...
4.
Kim M, Kim S, Park M, Ryu S, Jung H
RSC Adv
. 2022 May;
8(72):41633-41638.
PMID: 35559276
Herein, cotton fabric was treated with an alkaline solution to increase the content of surface hydroxyl groups and then functionalized with UiO-66-NH, a nanoporous metal-organic framework. Instrumental analysis of the...
5.
Cha G, Sivan S, Lee M, Oh K, Valekar A, Kim M, et al.
J Hazard Mater
. 2021 May;
417:125904.
PMID: 33975167
The development of efficient adsorbents to remove radioactive methyl iodide (CHI) in humid environments is crucial for air purification after pollution by nuclear power plant waste. In this work, we...
6.
Kim M, Kim M, Park J, Kim J, Ahn C, Jin A, et al.
Nanoscale
. 2020 Jul;
12(28):15214-15221.
PMID: 32639495
Micro/meso-porous Bi@C nanoplates are synthesized by pyrolyzing Bi-based metal-organic frameworks (MOFs) prepared by a microwave-assisted hydrothermal method to overcome huge volume expansion and pulverization of anode materials during battery operation....
7.
Jang S, Ka D, Jung H, Kim M, Jung H, Jin Y
Materials (Basel)
. 2020 Jul;
13(13).
PMID: 32630315
Zirconium hydroxide, Zr(OH) is known to be highly effective for the degradation of chemical nerve agents. Due to the strong interaction force between Zr(OH) and the adsorbed water, however, Zr(OH)...
8.
Jung H, Kim M, Jang S
J Colloid Interface Sci
. 2019 Dec;
563:363-369.
PMID: 31887700
Hypothesis: The development of clothing that protects soldiers in the battlefield against wetting and chemical/biological (CB) warfare agents is of utmost importance. There are many examples in nature where the...
9.
Son Y, Kim M, Ryu S, Kim H
ACS Appl Mater Interfaces
. 2018 Oct;
10(47):40651-40660.
PMID: 30375849
Sulfur mustard gas, also called HD, is one of the main chemical warfare agents and has claimed thousands of lives and left many more contaminated. The development of functional materials...
10.
Kim M, Yu S, Jin A, Kim J, Ko I, Lee K, et al.
Chem Commun (Camb)
. 2016 Oct;
52(79):11775-11778.
PMID: 27722313
A bismuth oxide electrode, delivering high capacity, as an anode material for sodium-ion batteries was simply prepared. The electrochemical properties of bismuth oxide were studied by operando X-ray absorption near...