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Particulate-Droplet Coalescence and Self-Transport on Superhydrophobic Surfaces

  • Xiao Yan
  • , Bingqiang Ji
  • , Lezhou Feng
  • , Xiong Wang
  • , Daolong Yang
  • , Kazi Fazle Rabbi
  • , Qi Peng
  • , Muhammad Jahidul Hoque
  • , Puhang Jin
  • , Elizabeth Bello
  • , Soumyadip Sett
  • , Marianne Alleyne
  • , Donald M. Cropek
  • , Nenad Miljkovic
  • University of Illinois at Urbana-Champaign
  • U.S. Army Engineer Research and Development Center
  • Kyushu University

科研成果: 期刊稿件文章同行评审

摘要

Particulate transport from surfaces governs a variety of phenomena including fungal spore dispersal, bioaerosol transmission, and self-cleaning. Here, we report a previously unidentified mechanism governing passive particulate removal from superhydrophobic surfaces, where a particle coalescing with a water droplet (∼10 to ∼100 μm) spontaneously launches. Compared to previously discovered coalescence-induced binary droplet jumping, the reported mechanism represents a more general capillary-inertial dominated transport mode coupled with particle/droplet properties and is typically mediated by rotation in addition to translation. Through wetting and momentum analyses, we show that transport physics depends on particle/droplet density, size, and wettability. The observed mechanism presents a simple and passive pathway to achieve self-cleaning on both artificial as well as biological materials as confirmed here with experiments conducted on butterfly wings, cicada wings, and clover leaves. Our findings provide insights into particle-droplet interaction and spontaneous particulate transport, which may facilitate the development of functional surfaces for medical, optical, thermal, and energy applications.

源语言英语
页(从-至)12910-12921
页数12
期刊ACS Nano
16
8
DOI
出版状态已出版 - 23 8月 2022
已对外发布

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