Eco-friendly synthesis of self-reporting robust superhydrophobic coatings with damage sensitive photoluminescence

2021 ◽  
pp. 134162
Author(s):  
Jingjing Liu ◽  
Meng Li ◽  
Chunyan Luo ◽  
Shun Zhou ◽  
Weixing Chen
2021 ◽  
Vol 84 ◽  
pp. 86-96
Author(s):  
Hongpeng Zheng ◽  
Li Liu ◽  
Fandi Meng ◽  
Yu Cui ◽  
Zhong Li ◽  
...  

2021 ◽  
pp. 2002111
Author(s):  
Calen J. Leverant ◽  
Yifan Zhang ◽  
Maria A. Cordoba ◽  
Sin‐Yen Leo ◽  
Nilesh Charpota ◽  
...  

Metals ◽  
2021 ◽  
Vol 11 (7) ◽  
pp. 1100
Author(s):  
Alexandre M. Emelyanenko ◽  
Valery V. Kaminsky ◽  
Ivan S. Pytskii ◽  
Kirill A. Emelyanenko ◽  
Alexander G. Domantovsky ◽  
...  

The interest in magnesium-based materials is promoted by their biocompatibility, their bioresorbability, and their recently discovered antibacterial potential. Until now, the widespread use of magnesium alloys in different corrosive environments was inhibited by their weakly controllable degradation rate and poorly understood microbiologically induced corrosion behavior. To better understand the degradation and usability of magnesium-based alloys, in this study we have fabricated superhydrophobic coatings on a magnesium-based alloy, and analyzed the behavior of this alloy in bacterial dispersions of Pseudomonas aeruginosa and Klebsiella pneumoniae cells in phosphate-buffered saline. It was shown that the immersion of such coatings in bacterial dispersions causes notable changes in the morphology of the samples, dependent on the bacterial dispersion composition and the type of bacterial strain. The interaction of the superhydrophobic coatings with the bacterial dispersion caused the formation of biofilms and sodium polyphosphate films, which provided enhanced barrier properties in magnesium dissolution and hence in dispersion medium alkalization, eventually leading to the inhibition of magnesium substrate degradation. The electrochemical data obtained for superhydrophobic samples in continuous contact with corrosive bacterial dispersions for 48 h indicated a high level of anticorrosion protection.


Langmuir ◽  
2018 ◽  
Vol 34 (24) ◽  
pp. 7059-7066 ◽  
Author(s):  
Ludmila B. Boinovich ◽  
Kirill A. Emelyanenko ◽  
Alexander G. Domantovsky ◽  
Alexandre M. Emelyanenko

2021 ◽  
pp. 151088
Author(s):  
Ngoc Man Phan ◽  
Jae-Hyun Kim ◽  
Jaeyun Kim ◽  
Byung Mook Weon ◽  
Gi-Ra Yi

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