Photoactive barium titanate-encapsulated polymer microcapsules for infrared-reflective coatings

Energy-efficient surface applications require infrared (IR)-reflective coatings with strong adhesion and effective thermal management. In this study, polymer microcapsules encapsulating surface-modified barium titanate (BaTiO 3 ) particles were prepared by suspension polymerization. The BaTiO 3 particles were modified with oleic acid (o-BaTiO 3 ) to improve their dispersion in the monomer phase before encapsulation into poly(methyl methacrylate-ethyleneglycol dimethacrylate-benzophenone) (P(MMA-EGDMA-BP)) microcapsules. The BP component was incorporated into the microcapsule shell as a photoactive component to promote UV-assisted coating retention on substrate surfaces. The resulting microcapsules exhibited a coating add-on exceeding 90%, with approximately 98% of the coating remaining after post-treatment and washing. In addition, the BaTiO 3 -containing microcapsules exhibited an average IR reflectance of over 70% and reduced the surface temperature by up to 13 °C under laboratory thermal radiation. These results demonstrate that integrating BaTiO 3 encapsulation with BP-containing polymer microcapsules provides an effective approach for improving coating retention and IR-reflective performance, offering potential for thermal management coating applications.

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Publication Details

Journal
Next Materials
Published
2026-09-18
DOI
https://doi.org/10.1016/j.nxmate.2026.103551
Primary Topic
Aerogels and thermal insulation
Type
article
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article

Photoactive barium titanate-encapsulated polymer microcapsules for infrared-reflective coatings

Amorn Chaiyasat, Preeyaporn Chaiyasat, Jittipat Omsinsombon, Akira Sangchalee
Next Materials
Aerogels and thermal insulation
article

Photoactive barium titanate-encapsulated polymer microcapsules for infrared-reflective coatings

Amorn Chaiyasat, Preeyaporn Chaiyasat, Jittipat Omsinsombon, Akira Sangchalee
article en

Abstract

Energy-efficient surface applications require infrared (IR)-reflective coatings with strong adhesion and effective thermal management. In this study, polymer microcapsules encapsulating surface-modified barium titanate (BaTiO 3 ) particles were prepared by suspension polymerization. The BaTiO 3 particles were modified with oleic acid (o-BaTiO 3 ) to improve their dispersion in the monomer phase before encapsulation into poly(methyl methacrylate-ethyleneglycol dimethacrylate-benzophenone) (P(MMA-EGDMA-BP)) microcapsules. The BP component was incorporated into the microcapsule shell as a photoactive component to promote UV-assisted coating retention on substrate surfaces. The resulting microcapsules exhibited a coating add-on exceeding 90%, with approximately 98% of the coating remaining after post-treatment and washing. In addition, the BaTiO 3 -containing microcapsules exhibited an average IR reflectance of over 70% and reduced the surface temperature by up to 13 °C under laboratory thermal radiation. These results demonstrate that integrating BaTiO 3 encapsulation with BP-containing polymer microcapsules provides an effective approach for improving coating retention and IR-reflective performance, offering potential for thermal management coating applications.

Next MaterialsVol. 13
Rajamangala University of Technology (TH)
Affordable and clean energy
Openalex Percentile: Top 22%
Aerogels and thermal insulation
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Photoactive barium titanate-encapsulated polymer microcapsules for infrared-reflective coatings — Amorn Chaiyasat, Preeyaporn Chaiyasat, et al. · Next Materials (2026) | TGRS Research Map | TGRS