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Extremely Ice-Detached Array of Pine Needle-Inspired Concave-Cone Pillars

  • Zhenyu Guo
  • , Bo Peng
  • , Yufang Liu
  • , Jinghui Li
  • , Wenle Pei
  • , Qunyang Li*
  • , Yongmei Zheng
  • *Corresponding author for this work
  • Beihang University
  • Tsinghua University

Research output: Contribution to journalArticlepeer-review

Abstract

Inspired by the features of natural pine needle, a superhydrophobic concave-cone pillar surface (CCPS) is designed by using polymer via soft lithography and printing methods. CCPS has the characterizes of unique flexible performance and concave conical geometry to lower adhesion between liquid/ice–solid interfaces, thus as-frozen ice droplet can be easily detached by tilting or a slight shear flow. Comparing to normal cone pillar surface, CCPS achieves excellent deicing ability, attributed to unique antipinning effect between ice and concave-cone pillars, which is demonstrated by force characterization. This finding offers an insight into design of novel icephobic/anti-icing surfaces and materials that can be extended into some applied realms for solving icing problems, e.g., transmission line, traffic road, aircraft wing, etc.

Original languageEnglish
Article number1901714
JournalAdvanced Materials Interfaces
Volume7
Issue number2
DOIs
StatePublished - 1 Jan 2020

Keywords

  • bio-inspired
  • concave-cone pillars
  • flexibility
  • ice-detached
  • pine needle

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