Prof. Chang-Sik HA
Department of Polymer
Science and Engineering
Pusan National
University, Korea
Professor
Email: csha@pnu.edu, [email protected]
Qualifications
1987 Ph.D., Korea Advanced
Institute and Technology (KAIST), Korea, Polymer Physics and Engineering
1980 M.Sc., KAIST, Korea, Chemical Engineering
1978 B.Sc., Pusan National University, Korea, Chemical
Engineering
Publications (Selected)
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Ran P, Wang B, Dong F,
et al. Robust superhydrophobic polyurea composite coating with
octadecyltrimethoxysilane-modified halloysite nanotubes: Hierarchical design
for mechanical and chemical durability in harsh environments[J]. Progress in
Organic Coatings, 2025, 208: 109539.
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Ayana K D, Ha C S, Ali A Y. Property optimization of wood polymer
composites (WPC) formulated from recycled thermoplastic blends and bamboo
particles reinforcements by cross-linking coupling agent and initiator
catalyst[J]. Composite Interfaces, 2025, 32(9): 1305-1327.
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Ayana K D, Yoo J M, Jeon W, et al. Wood polymer composite (WPC)
formulation from Ethiopian indigenous lowland bamboo particles and
post-consumer plastic blends: synergetic and dual effects of both coupling
agent and organic crosslinking catalyst[J]. Macromolecular Research, 2025,
33(4): 479-496.
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Nagella S R, Ha C S. Hybrid films of novel fluorinated polyimides and
hyperbranched cyclotriphosphazene polymer for enhanced flame retardancy,
thermomechanical properties, and reduced dielectric constant[J]. Chemical
Communications, 2025, 61(25): 4824-4827.
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Ayana K D, Ali A Y, Ha C S. Wood polymer composites based on the recycled
polyethylene blends from municipal waste and Ethiopian indigenous bamboo
(Oxytenanthera abyssinica) fibrous particles through chemical coupling
crosslinking[J]. Polymers, 2024, 16(21): 2982.
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Ayana K D, Ha C S, Ali A Y. Comprehensive overview of wood polymer
composite: Formulation and technology, properties, interphase modification, and
characterization[J]. Sustainable Materials and Technologies, 2024, 40: e00983.
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Yan Y Z, Chen K, Moon H R, et al. Flexible and hydrophobic
polyimide/MXene-POSS nanocomposite films for electromagnetic interference
shielding[J]. European Polymer Journal, 2024, 202: 112655.
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Liu Y, An Q, Xiao Z, et al. Integrated fabrication of CMC@ UiO-66–NH 2@
PEI composite adsorbents for efficient batch and dynamic phosphate capture[J].
Environmental Science: Water Research & Technology, 2024, 10(1): 168-181.
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Yuan B, An Q, Xiao Z, et al. Resources Chemicals and Materials[J].
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Nagella S R, Vijitha R, Naidu B R, et al. Benchmarking recent advances in
hydrogen production using g-C3N4-based photocatalysts[J]. Nano Energy, 2023,
111: 108402.
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Zhang W J, Li S, Vijayan V, et al. ROS-and pH-responsive polydopamine
functionalized Ti3C2Tx MXene-based nanoparticles as drug delivery nanocarriers
with high antibacterial activity[J]. Nanomaterials, 2022, 12(24): 4392.
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Kong J, Park S S, Ha C S. pH-sensitive polyacrylic acid-gated mesoporous
silica nanocarrier incorporated with calcium ions for controlled drug
release[J]. Materials, 2022, 15(17): 5926.
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Sutar R S, Nagappan S, Bhosale A K, et al. Superhydrophobic Al2O3–polymer
composite coating for self-cleaning applications[J]. Coatings, 2021, 11(10):
1162.
Profile
Details
https://hacs.pusan.ac.kr/hacs/47380/subview.do
https://scholar.google.com/citations?user=62Wzhb0AAAAJ&hl=en
https://en.wikipedia.org/wiki/Chang-Sik_Ha
WoS Researcher ID: GZL-9046-2022