TY - JOUR
T1 - Facile design of “sticky” near superamphiphobic surfaces on highly porous substrate
AU - Cao, Yijian
AU - Salvini, Antonella
AU - Camaiti, Mara
N1 - Publisher Copyright:
© 2018 Elsevier Ltd
PY - 2018/9/5
Y1 - 2018/9/5
N2 - Several “sticky” near superamphiphobic surfaces were fabricated on naturally porous and rough substrate by simply deposing oligoamides solutions, needless of surface modification or integrating nano-materials. These surfaces exhibit very high water and oil contact angles (CA) (water CA > 150° oil CA > 140°) together with high sliding angles (>90°). The nanomaterial-free coating compounds are well-defined, homologous partially fluorinated oligoamides (synthesized via condensation reactions) which have consistent but slightly varied properties, in terms of CA and CA hysteresis. These surfaces show very high adhesion force to water droplets; in essence, the strong adhesion force is owing to the combination of capillary force derived from newly generated micro-porosity of substrate and the interaction between amidic groups of coating and water molecules. Besides, they exhibit high stability and durability after water immersion test. This approach may provoke new ideas for creating superamphiphobic surfaces with special adhesion properties on porous substrates. Moreover, these materials could also be potentially employed as water repellents for porous building materials, since they are easy to handle and soluble in environmentally benign solvents. In addition to very high water inhibition efficiency, they manifest high residual vapor permeability and preserve the physical characteristics, i.e. vapor diffusivity and chromatic features, of substrate.
AB - Several “sticky” near superamphiphobic surfaces were fabricated on naturally porous and rough substrate by simply deposing oligoamides solutions, needless of surface modification or integrating nano-materials. These surfaces exhibit very high water and oil contact angles (CA) (water CA > 150° oil CA > 140°) together with high sliding angles (>90°). The nanomaterial-free coating compounds are well-defined, homologous partially fluorinated oligoamides (synthesized via condensation reactions) which have consistent but slightly varied properties, in terms of CA and CA hysteresis. These surfaces show very high adhesion force to water droplets; in essence, the strong adhesion force is owing to the combination of capillary force derived from newly generated micro-porosity of substrate and the interaction between amidic groups of coating and water molecules. Besides, they exhibit high stability and durability after water immersion test. This approach may provoke new ideas for creating superamphiphobic surfaces with special adhesion properties on porous substrates. Moreover, these materials could also be potentially employed as water repellents for porous building materials, since they are easy to handle and soluble in environmentally benign solvents. In addition to very high water inhibition efficiency, they manifest high residual vapor permeability and preserve the physical characteristics, i.e. vapor diffusivity and chromatic features, of substrate.
KW - High water adhesive force
KW - Near superoleophobic effect
KW - Oligo(ethylenesuberamide)
KW - Perfluoropolyethers
KW - Superhydrophobic effect
KW - Surface treatment
UR - http://www.scopus.com/inward/record.url?scp=85046807477&partnerID=8YFLogxK
U2 - 10.1016/j.matdes.2018.04.063
DO - 10.1016/j.matdes.2018.04.063
M3 - 文章
AN - SCOPUS:85046807477
SN - 0264-1275
VL - 153
SP - 139
EP - 152
JO - Materials and Design
JF - Materials and Design
ER -