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Superhydrophobic Polymers

2023
Hydrophobicity and superhydrophobicity are well-known bioinspired properties of several plant surfaces. This kind of wetting control can lead to many applications, e.g. self-cleaning, enhanced heat-transfer properties, friction control, anti-biofouling surfaces, etc.
K. Ellinas, P. Dimitrakellis
openaire   +1 more source

Sticky Superhydrophobic State

The Journal of Physical Chemistry Letters
It is common sense that the droplet is stickier to substrates with larger solid-liquid contact areas. Here, we report that this intuitive trend reverses for hollowed micropillars, where a decrease in solid-liquid contact area caused by an increase in the pore size of a pillar top leads to an increase in the droplet depinning force.
Youhua Jiang, Yilian Xiao, Chuanqi Wei
openaire   +2 more sources

Wetting and Superhydrophobicity

Langmuir, 2009
This article is written to serve as an introduction to the topic of “Wetting and Superhydrophobicity” and to give some perspective for the papers that follow. This area of research that impacts and overlaps many fields of science and technology has been identifiable for centuries, but has gained considerable traction in the past decade.
Gao, LC, McCarthy, TJ, Zhang, X
openaire   +2 more sources

Superhydrophobic Polymers

2015
Superhydrophobic polymers are particularly attractive materials, as they combine low cost, ease of processing, and compatibility with a variety of applications. Surfaces that display the Cassie–Baxter wetting state are particularly attractive for their self-cleaning properties.
Crawford, Russell J., Ivanova, Elena P.
openaire   +2 more sources

Superhydrophobicity

2016
Shihao Huang   +6 more
  +4 more sources

Preparation methods and research progress of superhydrophobic paper

Coordination Chemistry Reviews, 2021
Anling Li, Jiwen Wang
exaly  

Superhydrophobicity

2014
Wolfgang M. Sigmund, Shu-Hau Hsu
openaire   +1 more source

Superhydrophobic Materials

2014
Superhydrophobic materials have low affinity for water and are extremely difficult to wet. They can be prepared by surface texturing to introduce a hierarchical structure with features at both the microscale and nanoscale combined with a layer of a fluorinated compounds.
openaire   +1 more source

Superhydrophobicity

2012
Yimei Zhu   +88 more
openaire   +1 more source

Superhydrophobicity

2011
Michael Nosonovsky, Pradeep K. Rohatgi
openaire   +1 more source

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