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The development of highly functional paints improving NIR reflectance by investigating silica particles size for pigment mixing

안료배합용 실리카 입자사이즈에 따른 근적외선 반사율을 향상시킨 고기능성 도료 제조

  • Received : 2024.04.12
  • Accepted : 2024.04.24
  • Published : 2024.04.30

Abstract

In order to overcome the urban heat island effect, highly functional paint is attracting attention as a promising means by shielding heat on the structure (building) surface. When a paint was prepared containing nano-sized silica particles, the heat-insulating performance was relatively higher than that of paints with other sizes. In addition, developed paints showed enhanced properties such as chemical resistance and abrasion resistance test because of the presence of nano-sized silica included in functional paint.

Keywords

Acknowledgement

본 논문은 중소벤처기업부 산학연Collabo R&D "무기-유기 복합수지 기반의 유해물질 및 VOCs 저감을 위한 도로용 친환경 수송 차열도료 개발[S3301417]" 및 한국생산기술연구원 기본사업 "해수담수/수전해를 이용한 그린수소 생산시스템 및 핵심부품 개발(5/6) (KITECH JA-24-0004)"의 지원을 받아 수행한 연구입니다.

References

  1. L. Zhang, H. Fukuda, Z. Liu, The value of cool roof as a strategy to mitigate urban heat island effect: A contingent valuation approach, Journal of Cleaner Production, 228 (2019) 770-777. 
  2. M. Fedel, A. Rosati, M. Bertasini, S. Rossi, Cu doped YInO3-ZnO green colored NIR reflective pigments: Synthesis and application in PMMA based cool-roof coatings, Progress in Organic Coatings, 182 (2023) 107708. 
  3. A. Rosati, M. Fedel, S. Rossi, Laboratory scale characterization of cool roof paints: Comparison among different artificial radiation sources, Progress in Organic Coatings, 161 (2021) 106464. 
  4. M. Zheng, L. Han, F. Wang, H. Mi, Y. Li, L. He, Comparison and analysis on heat reflective coating for asphalt pavement based on cooling effect and anti-skid performance, Construction and Building Materials, 93 (2015) 1197-1205. 
  5. E. Hadizadeh, S. Pazokifard, S.M. Mirabedini, H. Ashrafian, Optimizing practical properties of MMA-based cold plastic road marking paints using mixture experimental design, Progress in Organic Coatings, 147 (2020) 105784. 
  6. X. Li, I. Zhitomirsky, Deposition of poly(methyl methacrylate) and composites containing bioceramics and bioglass by dip coating using isopropanol-water co-solvent, Progress in Organic Coatings, 148 (2020) 105883. 
  7. M.C. Uvida, A. Trentin, S.V. Harb, S.H. Pulcinelli, C.V. Santilli, P. Hammer, Nanostructured poly(methyl Methacrylate)-silica coatings for corrosion protection of reinforcing steel, ACS Applied Nano Materials, 5 (2022) 2603-2615. 
  8. N. Xie, H. Li, W. Zhao, C. Zhang, B. Yang, H. Zhang, Y. Zhang, Optical and durability performance of near-infrared reflective coatings for cool pavement: Laboratorial investigation, Building and Environment, 163 (2019) 106334. 
  9. N. Xie, H. Li, A. Abdelhady, J. Harvey, Laboratorial investigation on optical and thermal properties of cool pavement nano-coatings for urban heat island mitigation, Building and Environment, 147 (2019) 231-240. 
  10. Y. Shi, M. Zhong, Z. Zhang, D. Wang, Crystal structure and near-infrared reflective properties of Fe3+ doped AlPO 4 pigments, Ceramics International, 43 (2017) 5979-5983. 
  11. M. Li, Y. Li, F. Xue, X. Jing, Water-based acrylate copolymer/silica hybrids for facile preparation of robust and durable superhydrophobic coatings, Applied Surface Science, 447 (2018) 489-499. 
  12. S. Fatemi, M.K. Varkani, Z. Ranjbar, S. Bastani, Optimization of the water-based road-marking paint by experimental design, mixture method, Progress in Organic Coatings, 55 (2006) 337-344. 
  13. K. Okada, S. Matsui, T. Isobe, Y. Kameshima, A. Nakajima, Water-retention properties of porous ceramics prepared from mixtures of allophane and vermiculite for materials to counteract heat island effects, Ceramics International, 34 (2008) 345-350. 
  14. L. Bonizzoni, C. Colombo, S. Ferrati, M. Gargano, M. Greco, N. Ludwig, M. Realini, A critical analysis of the application of EDXRF spectrometry on complex stratigraphies, X-ray spectroscopy, 40 (2011) 247-253. 
  15. G.B. Smith, A. Gentle, P. Swift, A. Earp, N. Mronga, Coloured paints based on coated flakes of metal as the pigment, for enhanced solar reflectance and cooler interiors: description and theory, Solar Energy Materials and Solar Cells, 79 (2003) 163-177. 
  16. O. Sandin, J. Nordin, M. Jonsson, Reflective properties of hollow microspheres in cool roof coatings, Journal of Coatings Technology and Research, 14 (2017) 817-821. 
  17. Y. Wu, L.F. Francis, Effect of particle size distribution on stress development and microstructure of particulate coatings, Journal of Coatings Technology and Research, 14 (2017) 455-465. 
  18. Y. Xue, Z. Huang, X. Yang, J. Zhao, H. Zhang, G. Zhang, A. Guo, L. Yan, F. Hou, J. Liu, High temperature-resistant flexible inorganic coating for aluminium silicate fiber cloth with low solar absorption ratio and high emissivity, Ceramics International, 49 (2023) 13799-13806. 
  19. H. Luo, C.M. Cardinal, L.E. Scriven, L.F. Francis, Ceramic nanoparticle/monodisperse latex coatings, Langmuir, 24 (2008) 5552-5561. 
  20. K. Ko, D. Yoon, S.C. Yang, H.S. Lee, Brush-painted superhydrophobic silica coating layers for self-cleaning solar panels, Journal of Industrial and Engineering Chemistry, 106 (2022) 460-468. 
  21. T.H. Kim, K.C. Song, Low-temperature preparation of superhydrophilic coatings using tetraethoxysilane and colloidal silica by sol-gel method, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 647 (2022) 129105.
  22. J. Fu, H. Yu, L. Wang, R. Liang, C. Zhang, M. Jin, Preparation and properties of UV-curable polyurethane acrylate / SiO2 composite hard coatings, Progress in Organic Coatings, 153 (2021) 106121. 
  23. Y. Chen, R. Liu, J. Luo, Enhancing weathering resistance of UV-curable coatings by using TiO2 particles as filler, Progress in Organic Coatings, 169 (2022) 106936.
  24. J. Qiu, W. Ye, X. Xu, B. Guo, R. Wang, C. Hu, J. Zhuang, H. Dong, G. Hu, Y. Liu, Controllable synthesis of carbon dots@CaCO3 composites: tunable morphology, UV absorption properties, and application as an ultraviolet absorber, Crystal Growth & Design, 22 (2022) 4357-4365.