Department of Materials Science and Engineering, Kumoh National Institute of Technology, Gumi, Gyeongbuk 39177, Republic of Korea; Department of Energy Engineering Convergence, Kumoh National Institute of Technology, Gumi, Gyeongbuk 39177, Republic of Korea.
Department of Materials Science and Engineering, Kumoh National Institute of Technology, Gumi, Gyeongbuk 39177, Republic of Korea; Department of Energy Engineering Convergence, Kumoh National Institute of Technology, Gumi, Gyeongbuk 39177, Republic of Korea.
J Hazard Mater. 2023 Jun 15;452:131241. doi: 10.1016/j.jhazmat.2023.131241. Epub 2023 Mar 18.
Exploring pore structures that are optically transparent and have high filtration efficiency for ultrafine dust is very important for realizing passive window filters for indoor air purification. Herein, a polyester track-etched (PETE) membrane with vertically perforated micropores is investigated as a cost-effective candidate for transparent window filters. The pore size, which governs transparency and filtration efficiency, can be precisely tuned by conformally depositing an ultrathin oxide layer on the PETE membrane via atomic layer deposition. The maximum visible light transmittance (∼81.2 %) was achieved with an alumina layer of approximately 55 nm, and the resulting composite membrane exhibited competitive filtration efficiency compared to commercial products. The chemically inert alumina layer also increased resistance to various external stimuli and enabled simple cleaning of the contaminated membrane surface with a solvent. The membrane installed on an insect screen effectively maintained its filtration performance (∼85 % for PM) even after 10 reuse cycles under extremely harsh conditions (PM concentration: ∼5000 μg cm). The proposed through-hole composite membrane can expand the choice of aesthetic window filters to situations that require high outside visibility and daylighting.
探索具有光学透明性和超高微细粉尘过滤效率的多孔结构对于实现用于室内空气净化的被动窗过滤器非常重要。在此,研究了具有垂直穿孔微孔的聚酯轨迹蚀刻(PETE)膜,作为透明窗过滤器的具有成本效益的候选材料。通过原子层沉积在 PETE 膜上共形沉积超薄氧化物层,可以精确调整控制透明度和过滤效率的孔径。氧化铝层约为 55nm 时,最大可见光透过率(约 81.2%),所得复合膜的过滤效率与商业产品相当。化学惰性的氧化铝层还提高了对各种外部刺激的抵抗力,并能够用溶剂简单地清洁污染的膜表面。该膜安装在防虫网上,即使在极其恶劣的条件下(PM 浓度:约 5000μg cm)重复使用 10 次后,仍能保持其过滤性能(PM 约 85%)。所提出的通孔复合膜可以将美观的窗过滤器的选择扩展到需要高外部可见度和采光的情况。