Bioinspired capillary force-driven super-adhesive filter
成果类型:
Article
署名作者:
Park, Junyong; Moon, Chan Sik; Lee, Ji Min; Rahat, Sazzadul A.; Kim, Sang Moon; Pham, Jonathan T.; Kappl, Michael; Butt, Hans-Juergen; Wooh, Sanghyuk
署名单位:
Chung Ang University; University System of Ohio; University of Cincinnati; Incheon National University; University System of Ohio; University of Cincinnati; Max Planck Society
刊物名称:
Nature
ISSN/ISSBN:
0028-2528
DOI:
10.1038/s41586-025-09156-y
发表日期:
2025-07-10
关键词:
inhibition
SURFACES
fabrication
deposition
media
摘要:
Capturing particles with low, nanonewton-scale adhesion is an ongoing challenge for conventional air filters1,2. Inspired by the natural filtration abilities of mucus-coated nasal hairs3,4, we introduce an efficient, biomimetic filter that exploits a thin liquid coating. Here we show that a stable thin liquid layer is formed on several filter media that generates enhanced particulate adhesion, driven by micronewton to sub-micronewton capillary forces5,6. Enhanced particle adhesion increases the filtration of airborne particulates while maintaining air permeability, providing longer filter lifetime and increased energy savings. Moreover, strong adhesion of the captured particles enables effective filtration under high-speed airflow as well as suppression of particle redispersion. We anticipate that these filters with thin liquid layers afford a new way to innovate particulate matter filtering systems.