Ji-Young Park
Korea Advanced Institute of Science and Technology · Materials Science
About the Lab
Professor Ji-Young Park's research lab specializes in advanced materials development with a focus on sustainable photopolymer systems, functional nanomaterials for construction durability, and bioactive natural product applications. The lab investigates environment-friendly photolithography materials, including water-processable resists and holographic recording films, while also developing corrosion-resistant materials like calcium-iron layered double hydroxides for reinforced concrete. Additionally, the lab explores the biochemical mechanisms of traditional herbal extracts in relation to oxidative stress and aging-related enzymes. These interdisciplinary efforts bridge materials science, environmental sustainability, and biomedical applications.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15BACKGROUND: Porcine reproductive and respiratory syndrome virus (PRRSV) has caused huge economic losses in the global swine industry. Frequent genetic variations in this virus cause difficulties in controlling and accurately diagnosing PRRSV. METHODS: In this study, we investigated the genetic characteristics of PRRSV-1 and PRRSV-2 circulating in Korea from January 2018 to September 2021 and evaluated three one-step real-time reverse transcription polymerase chain reaction (RT-PCR) assays. RESUL
Abstract Novel water‐processable photopolymers were designed to be useful as environment‐friendly photolithographic materials. By copolymerization of 2‐(2‐diazo‐3‐oxo‐butyryloxy)ethyl methacrylate (DOBEMA), hydroxyethyl methacrylate (HEMA), methacryllic acid (MAA), and sodium 4‐vinylbenzenesulfonate (SVBS), two kinds of polymers, poly(DOBEMA‐ co ‐HEMA‐ co ‐SVBS) for negative‐tone resist and poly(DOBEMA‐ co ‐MAA) for positive‐tone resist, were synthesized and their photolithographic properties we
The photopolymerization of aromatic methacrylate in organic-inorganic nanocomposite films for holographic recording media was investigated. Thick photopolymer films (thickness>200 µm) were prepared using organic-inorganic hybrid solutions containing high refractive index monomers, through the sol-gel process. These photopolymer films were polymerized upon exposure to a visible light with high photo conversions. The photopolymerization was highly effective under visible light irradiation and c
Reinforced concrete is among the most multifaceted materials used in the construction field. Maintaining the resistance of reinforced concrete to weathering, abrasion, and chemical attack, particularly in aggressive natural conditions such as seawater environments, is challenging. The main factor in the degradation of reinforced-concrete durability is chloride penetration, which accelerates iron alloy corrosion and facilitates structural degradation. In this study, calcium-iron-based layered dou
Predicting photolithography performance in silico for a given materials combination is essential for developing better patterning processes. However, it is still an extremely daunting task because of the entangled chemistry with multiple reactions among many material components. Herein, we investigated the EUV-induced photochemical reaction mechanism of a model photoacid generator (PAG), triphenylsulfonium cation, using atomiC-Scale materials modeling to elucidate that the acid generation yield
ABSTRACT Objectives : The present study was designed to investigate effects of Ssa nghwa-tang (Shuānghuā-gēng) on oxidation/reduction reaction-related and aging-related enzymes in vitro. Methods : We performed MTT assay, collagenase inhibition assay, elastas e inhibition assay, tyrosinase inhibition assay, DPPH free radical scavenging assay, SOD-like activity an d xanthine oxidase (XO) inhibition assay.Results : The 50% ethanol (EtOH) extract of Ssanghwa-tang (SHT) showed 55% inhibition of colla
mm per year), which can be remarkably inhibited showing 98.83% of corrosion inhibition efficiency when it is surrounded by those CaFe-LDHs. The novel adsorption mechanisms of these CaFe-LDHs-induced crystals and corresponding corrosion protection properties are elucidated drawing on synergy of memory effects and chemical reactions.
Research Areas
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