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Long-term stability of aerophilic metallic surfaces underwater

delete2023-09-18
delete29
PRE
AI
A
Alexander B. Tesler *
S
Stefan Kolle
L
Lucia H. Prado
I
Ingo Thievessen
D
David Böhringer
M
Matilda Backholm
B
Bhuvaneshwari Karunakaran
H
Heikki A. Nurmi
L
Latikka, Mika
L
Lena Fischer
S
Shane J. Stafslien
Z
Zoran Cenev
J
Jaakko V. I. Timonen
M
Mark Bruns
A
Anca Mazare
U
Ulrich Lohbauer
S
Sannakaisa Virtanen
B
BrownRobert (Ben Fabry)
P
Patrik Schmuki
R
Robin H. A. Ras
J
Joanna Aizenberg
W
Wolfgang H. Goldmann *
DOI:10.1038/s41563-023-01670-6delete
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Abstract

Abstract

En 中文
Aerophilic surfaces immersed underwater trap films of air known as plastrons. Plastrons have typically been considered impractical for underwater engineering applications due to their metastable performance. Here, we describe aerophilic titanium alloy (Ti) surfaces with extended plastron lifetimes that are conserved for months underwater. Long-term stability is achieved by the formation of highly rough hierarchically structured surfaces via electrochemical anodization combined with a low-surface-energy coating produced by a fluorinated surfactant. Aerophilic Ti surfaces drastically reduce blood adhesion and, when submerged in water, prevent adhesion of bacteria and marine organisms such as barnacles and mussels. Overall, we demonstrate a general strategy to achieve the long-term stability of plastrons on aerophilic surfaces for previously unattainable underwater applications. Trapped films of air known as plastrons are promising for underwater engineering but typically have short lifetimes. Here, aerophilic titanium alloy surfaces are developed with thermodynamically stabilized plastrons for antifouling applications.
Keywords:
CANDLE SOOT
WETTABILITY
MECHANICS
TITANIUM

Journal

Nature Materials cover
Nature Materials
IF:
38.5
Papers:
6.8K
Citations:
11.5W

Organization

A
Aalto University
Scholars:
1.6W
Papers: 1.5W
Citations: 2.1W
U
University of Erlangen Nuremberg
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Papers: 2.6W
Citations: 29
H
Harvard University
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26.2W
Papers: 21.9W
Citations: 28.7W
N
north dakota state university fargo
Scholars:
5.4K
Papers: 4.8K
Citations: 6
P
Palacky University Olomouc
Scholars:
6.9K
Papers: 5.6K
Citations: 62
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