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Lee, Seung Geol
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Decomposition mechanisms of self-polishing copolymers for antifouling coating materials through first-principles approach

Author(s)
Kwon, Sung HyunLee, InwonPark, HyunLee, Seung Geol
Issued Date
2020-01
DOI
10.1016/j.porgcoat.2019.105406
URI
https://scholarworks.unist.ac.kr/handle/201301/81707
Citation
PROGRESS IN ORGANIC COATINGS, v.138, pp.105406
Abstract
Density functional theory calculations were performed to explain the decomposition mechanisms of selected self-polishing copolymer (SPC) molecules like tributyltin (TBT), zinc methacrylate (ZMA), copper methacrylate (CMA), and triisopropylsilyl acrylate (TIPSA). The comparison between the different activation energies of the SPC molecules indicated that ZMA and CMA could be polished faster than TBT and TIPSA; moreover, ZMA and CMA exhibited stronger adsorption energy and lower activation energy than TBT and TIPSA. The results also indicate that the configuration and chemical species of the pendant atoms in the functional group of the SPC molecules are essential for their antifouling performance.
Publisher
ELSEVIER SCIENCE SA
ISSN
0300-9440
Keyword (Author)
Self-polishing copolymer (SPC)Antifouling paintDensity functional theory (DFT)Decomposition mechanism
Keyword
DENSITY-FUNCTIONAL THEORYSYNCHRONOUS-TRANSIT METHODREACTION PATHWAYSDEGRADATIONADSORPTIONMOLECULESSEAWATERPAINTSDFT

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