Development of superamphiphobic alumina nanofiber mats using trimethoxysilane with a short perfluoroalkyl chain
To avoid the generation of hazardous, long-chain perfluoroalkyl carboxylic acids (C n F2 n +1COOH, n ≥ 7), we develop relatively safer superamphiphobic alumina nanofiber mats. Our fabrication process focuses on two principles: lowering the surface energy using trimethoxy(1H, 1H, 2H, 2H-nonafluorohex...
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Veröffentlicht in: | Textile research journal 2018-08, Vol.88 (16), p.1803-1811 |
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Hauptverfasser: | , , , , |
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
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Zusammenfassung: | To avoid the generation of hazardous, long-chain perfluoroalkyl carboxylic acids (C
n
F2
n
+1COOH, n ≥ 7), we develop relatively safer superamphiphobic alumina nanofiber mats. Our fabrication process focuses on two principles: lowering the surface energy using trimethoxy(1H, 1H, 2H, 2H-nonafluorohexyl)silane (C4F9CH2CH2Si(OCH3)3), which has short-chain perfluoroalkyls that are relatively safer than long-chain ones; and creating a high-roughness surface from electrospun alumina nanofibers with an average fiber diameter of 155 nm and inter-fiber spacing of 451 nm. Such mats exhibit super-repellency for water (contact angle
θ
*
= 157°, contact angle hysteresis
Δ
θ
*
=
2
∘
, advancing angle
θ
adv
*
=
158°, receding angle
θ
rec
*
=
156°), and n-hexadecane (
θ
*
= 151°,
Δ
θ
*
=
9°,
θ
adv
*
=
152°,
θ
rec
*
=
143°). Furthermore, superamphiphobicity is maintained up to 350℃. |
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ISSN: | 0040-5175 1746-7748 |
DOI: | 10.1177/0040517517712093 |