Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings
Over the past several decades, producing materials from fossil-based sources has become a serious problem because such action continues to contribute to global warming and contamination of the ecosystem. Thus, it is highly desirable to address this issue through producing functional materials via gr...
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sg-ntu-dr.10356-1437962023-07-14T16:03:35Z Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings Bellido-Aguilar, Daniel Angel Zheng, Shunli Zhan, Xuejun Huang, Yinjuan Zhao, Xin Zeng, Xianting Pallathadka, Pramoda K. Zhang, Qichun Chen, Zhong School of Materials Science and Engineering Engineering::Materials Hydrophobic Coatings Isosorbide Over the past several decades, producing materials from fossil-based sources has become a serious problem because such action continues to contribute to global warming and contamination of the ecosystem. Thus, it is highly desirable to address this issue through producing functional materials via green chemistry such as the use of renewable compounds. In this paper, the preparation of hydrophobic coatings based on isosorbide, a derivative of polysaccharides, is reported. The inherently hydrophilic thermoset derived from isosorbide was made hydrophobic through the use of the hydrophobic curing agent F8815. The influence of the F8815 concentration on the decomposition temperature, glass transition temperature and storage modulus of the biobased samples was explored using TGA, DSC and DMA, respectively. The results showed that, despite of its poor mechanical and thermal properties, incorporation of F8815 served to improve the thermal and mechanical properties of the isosorbide-based polymers. Deconvolution analysis of FTIR spectra and SEM images provided insightful information on the participation of F8815 in the polymer network. Agency for Science, Technology and Research (A*STAR) Accepted version We would like to thank the funds (SERC 1528000048) obtained from the Agency for Science, Technology and Research (A*STAR) of Singapore. 2020-09-24T04:34:00Z 2020-09-24T04:34:00Z 2019 Journal Article Bellido-Aguilar, D. A., Zheng, S., Zhan, X., Huang, Y., Zhao, X., Zeng, X., . . . Chen, Z. (2019). Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings. Surface and Coatings Technology, 362, 274-281. doi:10.1016/j.surfcoat.2019.02.006 0257-8972 https://hdl.handle.net/10356/143796 10.1016/j.surfcoat.2019.02.006 362 274 281 en Surface and Coatings Technology © 2019 Elsevier B.V. All rights reserved. This paper was published in Surface and Coatings Technology and is made available with permission of Elsevier B.V. application/pdf |
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Engineering::Materials Hydrophobic Coatings Isosorbide Bellido-Aguilar, Daniel Angel Zheng, Shunli Zhan, Xuejun Huang, Yinjuan Zhao, Xin Zeng, Xianting Pallathadka, Pramoda K. Zhang, Qichun Chen, Zhong Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
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Over the past several decades, producing materials from fossil-based sources has become a serious problem because such action continues to contribute to global warming and contamination of the ecosystem. Thus, it is highly desirable to address this issue through producing functional materials via green chemistry such as the use of renewable compounds. In this paper, the preparation of hydrophobic coatings based on isosorbide, a derivative of polysaccharides, is reported. The inherently hydrophilic thermoset derived from isosorbide was made hydrophobic through the use of the hydrophobic curing agent F8815. The influence of the F8815 concentration on the decomposition temperature, glass transition temperature and storage modulus of the biobased samples was explored using TGA, DSC and DMA, respectively. The results showed that, despite of its poor mechanical and thermal properties, incorporation of F8815 served to improve the thermal and mechanical properties of the isosorbide-based polymers. Deconvolution analysis of FTIR spectra and SEM images provided insightful information on the participation of F8815 in the polymer network. |
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School of Materials Science and Engineering |
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School of Materials Science and Engineering Bellido-Aguilar, Daniel Angel Zheng, Shunli Zhan, Xuejun Huang, Yinjuan Zhao, Xin Zeng, Xianting Pallathadka, Pramoda K. Zhang, Qichun Chen, Zhong |
format |
Article |
author |
Bellido-Aguilar, Daniel Angel Zheng, Shunli Zhan, Xuejun Huang, Yinjuan Zhao, Xin Zeng, Xianting Pallathadka, Pramoda K. Zhang, Qichun Chen, Zhong |
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Bellido-Aguilar, Daniel Angel |
title |
Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
title_short |
Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
title_full |
Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
title_fullStr |
Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
title_full_unstemmed |
Effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
title_sort |
effect of a fluoroalkyl-functional curing agent on the wettability, thermal and mechanical properties of hydrophobic biobased epoxy coatings |
publishDate |
2020 |
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https://hdl.handle.net/10356/143796 |
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1773551236068409344 |