2016
DOI: 10.1021/acsami.6b03961
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Superamphiphobic and Electroactive Nanocomposite toward Self-Cleaning, Antiwear, and Anticorrosion Coatings

Abstract: Multifunctional coatings are in urgent demand in emerging fields. In this work, nanocomposite coatings with extraordinary self-cleaning, antiwear, and anticorrosion properties were prepared on aluminum substrate by a facile spraying technique. Core-shell structured polyaniline/functionalized carbon nanotubes (PANI/fCNTs) composite and nanosized silica were synergistically integrated into ethylene tetrafluoroethylene (ETFE) matrix to construct lotus-leaf-like structures, and 1H,1H,2H,2H- perfluorooctyltriethoxy… Show more

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Cited by 152 publications
(58 citation statements)
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“…The standard tape adhesion test (ASTM D 3359) was used to evaluate the adhesion strength between the interface of PVK, PVK‐Al 2 O 3 coatings and the substrate . The results are generally classified as follows: 0B (65%), 1B (35–65%), 2B (15–35%), 3B (5–15%), 4B (0–5%), and 5B (0% or none).…”
Section: Resultsmentioning
confidence: 99%
“…The standard tape adhesion test (ASTM D 3359) was used to evaluate the adhesion strength between the interface of PVK, PVK‐Al 2 O 3 coatings and the substrate . The results are generally classified as follows: 0B (65%), 1B (35–65%), 2B (15–35%), 3B (5–15%), 4B (0–5%), and 5B (0% or none).…”
Section: Resultsmentioning
confidence: 99%
“…Considering many practical applications, such as clothing, kitchenware, oil pipeline, and so on, antifouling property is of great significance in a wide range of areas . Yuan et al have prepared the superamphiphobic coating with composite ethylene tetrafluoroethylene‐polyaniline functionalized carbon nanotubes. Such a liquid‐repellent surface was able to keep the surface uncontaminated even after immersion test for 100 cycles in the sludge, while the blank aluminum plate was seriously covered with dirt after the first immersion.…”
Section: Functional Applicationsmentioning
confidence: 99%
“…Nonwetting tests with sludge c1,c2), mixture of H 2 O and ethylene glycol (EG) d), and concentrated H 2 SO 4 e). a–e) Reproduced with permission . Copyright 2016, American Chemical Society.…”
Section: Functional Applicationsmentioning
confidence: 99%
“…For organic matrix, called polymer-based nanocomposite, the most used polymers for preparation of nanocomposite coating can be listed as follows: epoxy [2][3][4][5][6][7], polyurethane [8,9], Chitosan [10,11], polyethylene glycol (PEG) [12][13][14][15], polyvinylidene fluoride (PVDF) [16], PANi [17][18][19], PPy [20][21][22][23], polystyrene [24], polyamic acid and polyimide [25], rubber-modified polybenzoxazine (PBZ) [26], polymers containing reactive trimethoxysilyl (TMOS) [27], pullulan [28], fluoroacrylic polymer [29,30], ethylene tetrafluoroethylene (ETFE) [31], polyacrylate [3], poly(N-vinyl carbazole) [32], polycarbonate [33], fluorinated polysiloxane [34], polyester [35], polyacrylic [36], polyvinyl alcohol (PVA) [37], polydimethylsiloxane [38], polyamide [39], and UV-curable polymers [40].…”
Section: Materials For Matrixmentioning
confidence: 99%
“…For organic nanoparticles (organic nanofiller), the most used nanoparticles were PTFE [80][81][82], PEO [83], PANi [31], or nanocellulose and cellulose nanocrystal [18,40].…”
Section: Materials For Nanofillersmentioning
confidence: 99%