Film-rupture actuated pump-free capillary enrichment for near-source airborne sampling

成果类型:
Article
署名作者:
Zhang, Chengqi; Liu, Shijie; Shen, Tao; Yu, Cunlong; Chu, Fuqiang; Jiang, Lei; Dong, Zhichao
署名单位:
Chinese Academy of Sciences; Technical Institute of Physics & Chemistry, CAS; Chinese Academy of Sciences; University of Science & Technology of China, CAS; Chinese Academy of Sciences; University of Science & Technology of China, CAS; Beihang University; University of Science & Technology Beijing
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2615727123
发表日期:
2026-08-18
页码:
e2615727123
关键词:
airborne sampling butterfly proboscis biomimetic film-rupture capillarity THIN LIQUID-FILMS DISJOINING PRESSURES FOAM FILMS transport DYNAMICS
摘要:
With the persistent threats from severe respiratory diseases and airborne pollutants, billions of people worldwide lack timely access to essential diagnostic services, particularly in low-resource regions where laboratory infrastructure is scarce. Conventional pump-suction airborne samplers face challenges including cost, power dependency, and unavoidable analyte loss in complex systems. Here, we demonstrate a film-rupture actuated capillary enrichment (FACE) airborne sampler that replaces external suction with inherent surface-energy release of a rupturing liquid film, unifying collection, recovery, and readout into a single, pump-free event. Guided by in situ observations of a coiled-butterfly-proboscis film-rupture drinking mode and a biomimetic ring-and-capillary design, the FACE sampler couples a suspending liquid film for high-area collection with film-rupture-augmented capillary transport for autonomous recovery. A film-rupture augmented Washburn model and an empty-effect design criterion with optimized double-outlet, Tesla-guided architecture quantitatively explain submillisecond triggering (<0.5 ms), high-velocity enrichment (>50 mm s(-1)), and complete evacuation with near-zero residue. Built from low-cost polymers (similar to$0.12), the pump-free and portable FACE sampler with a robust liquid film is demonstrated and adapted for diverse targets, scenarios, and detection methods. In the near-source demonstration, the FACE sampler outperforms the pump-suction device in improving sampling efficiency and minimizing dilution, enabling visual detection at two orders of magnitude lower analyte levels. We envision broad applications of the FACE airborne sampler in environmental monitoring, agricultural safety, and public healthcare, providing a sustainable and scalable approach toward equitable access to high-performance point-of-care technologies.
来源URL: