English

Water Droplet Bouncing on a non-Superhydrophobic Si Nanosprings

Soft Condensed Matter 2020-12-14 v1 Applied Physics

Abstract

Self-cleaning surfaces often make use of superhydrophobic coatings that repel water. Here, we report a hydrophobic Si nanospring surface, that effectively suppresses wetting by repelling water droplets. We investigated the dynamic response of Si nanospring arrays fabricated by glancing angle deposition. The vertical standing nanospring arrays were approximately 250 nm tall and 60 nm apart, which allowed the droplets to rebound within a few milliseconds after contact. Amazingly, the morphology of the nanostructures influences the impact dynamics. The rebound time and coefficient of restitution were also found to be higher for Si nanosprings than vertical SI columns. It has been proposed that the restoring force of the Si nanosprings may be responsible for the water droplet rebound and can be explained by considering the droplet/nanospring surface as a coupled spring system. These nanospring surfaces may find applications in self-cleaning windows, liquid-repellent exteriors, glass panels of solar cells, and antifouling agents for roof tiling.

Keywords

Cite

@article{arxiv.2005.09468,
  title  = {Water Droplet Bouncing on a non-Superhydrophobic Si Nanosprings},
  author = {Samir Kumar and Kyoko Namura and Motofumi Suzuki and Jitendra P. Singh},
  journal= {arXiv preprint arXiv:2005.09468},
  year   = {2020}
}

Comments

19 pages, 5 figures, 2 tables