Yun Tae Ho, Yim Changyong
Department of Precision Mechanical Engineering, Kyungpook National University (KNU), Sangju 37224, Korea.
School of Nano & Materials Science and Engineering, Kyungpook National University (KNU), Sangju 37224, Korea.
Nanomaterials (Basel). 2021 Oct 26;11(11):2845. doi: 10.3390/nano11112845.
Polymer coatings containing thermal blocking and near-infrared (NIR)-reflective pigments have received much attention for their potential applications in energy-saving fields. A drawback of these coatings is sustainability providing similar long-term performance. Surface cleaning is mandatory to remove contaminants that decrease reflectance. In this study, synthesized hollow titania as photocatalyst was used to impart anti-contamination to infrared (IR)-reflective coatings. A TiO shell was selectively formed on an anionic polystyrene core, modified by methacrylic acid. According to sintering temperature, the enhancement of light absorption ability and photocatalytic activity as methyl orange decomposition was observed with phase composition change. The methylene blue decomposition reaction, reflectance measurement, and measuring thermal profiling of coated steel confirmed the manifestation of hollow particles to dust degradation characteristics and the enhancement of reflection and thermal shielding.
含有热阻挡和近红外(NIR)反射颜料的聚合物涂层因其在节能领域的潜在应用而备受关注。这些涂层的一个缺点是可持续性,难以提供类似的长期性能。表面清洁是必须的,以去除降低反射率的污染物。在本研究中,合成的中空二氧化钛作为光催化剂用于赋予红外(IR)反射涂层抗污染性能。在由甲基丙烯酸改性的阴离子聚苯乙烯核上选择性地形成了TiO壳。根据烧结温度,随着相组成的变化,观察到光吸收能力和作为甲基橙分解的光催化活性增强。亚甲基蓝分解反应、反射率测量以及对涂层钢的热分析表明,中空颗粒具有粉尘降解特性,并且反射和热屏蔽性能得到增强。