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Beilstein J. Nanotechnol. 2026, 17, 63–96, doi:10.3762/bjnano.17.6
Figure 1: Examples of damage and vandalism occurred on different heritage sites, made of different materials....
Figure 2: General progression of the total number of scientific papers, books, reviews, and conference papers...
Figure 3: Materials and treatments. (a) Liquid fluorine-based polymer for stone protection; (b) spray cans of...
Figure 4: Macroscopic evaluation of the gradual MΒ degradation on treated (by means of an advanced hydrophobi...
Figure 5: (a) Average percentage and standard deviation of tile surface (%) colonized by the fungus Cladospor...
Figure 6: (a) Application of the F-WPU@ZIF-8/Ti3C2Tx coating for cultural heritage conservation. (b) Corrosio...
Figure 7: Contact angle as a function of the exposure time for wood samples kept (a, b) outdoors and (c, d) w...
Figure 8: (a) Schematics of liquid droplets in contact with superhydrophobic, hydrophobic, hydrophilic, and s...
Figure 9: Photographs of water drops on coated (a) marble, (b) wood, (c) silk, and (d) brass. (e) SEM image o...
Figure 10: Effect of different colorants in colored superhydrophobic coatings. (a) Effect of varying ratios of...
Figure 11: (a) Optical images of uncoated and coated samples while the self-cleaning test is carried out. (b) ...
Figure 12: Analysis of antifouling and self-cleaning properties of colored superhydrophobic coatings and coati...
Figure 13: Mechanical−chemical durability testing of colored superhydrophobic coatings. (a) Sandpaper abrasion...
Figure 14: (a) High-magnification SEM images of the 6P/1F/2Si coating (left, center) produced in [115]. A photograp...