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Surfaces displaying high hydrophobicity and strong water adhesion by soft-template electropolymerization using di-substituted benzenes as model

  • 04-05-2024
  • ORIGINAL PAPER
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Abstract

The article delves into the control of nanoscale surfaces to enhance properties such as antireflection, vapor condensation, and wetting. Natural surfaces like lotus leaves and wetting theories highlight the importance of surface structures for liquid repellency and adhesion. The Cassie-Baxter equation emphasizes the role of porous structures in capturing air fractions. The study focuses on soft-template electropolymerization using di-substituted benzenes to form nanotubes with controllable size. Eight different monomers are investigated, and the influence of monomer structure, water content, and electrodeposition method on surface structure and hydrophobicity is explored. The synthesis and characterization of the monomers are detailed, and the results of the electropolymerization experiments are discussed, offering insights into the optimization of surface properties through this innovative method.

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Title
Surfaces displaying high hydrophobicity and strong water adhesion by soft-template electropolymerization using di-substituted benzenes as model
Authors
Aminata Niang
Abdoulaye Dramé
Alioune Diouf
Frédéric Guittard
Thierry Darmanin
Publication date
04-05-2024
Publisher
Springer Berlin Heidelberg
Published in
Polymer Bulletin / Issue 13/2024
Print ISSN: 0170-0839
Electronic ISSN: 1436-2449
DOI
https://doi.org/10.1007/s00289-024-05280-3
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