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SUPERHYDROPHOBIC AND SUPERHYDROPHILIC MATERIALS, SURFACES AND METHODS

机译:超疏水性和超亲水性材料,表面和方法

摘要

A broadly applicable method requiring no more than a single step facilitates the preparation of large area super hydrophobic or super hydrophilic surfaces on a variety of substrates such as such as glass, metal, plastic, paper, wood, concrete and masonry. The technique involves the free radical polymerization of common acrylic or styrenic monomers in the presence of porogenic solvents in a mold or on a free surface. The material can be semi- or fully-transparent and either super hydrophobic or super hydrophilic depending on the choice of the monomers. Because porosity and dual scale roughness are intrinsic bulk properties of the monolithic materials and not only a surface characteristic, the polymers can be powdered to produce a super hydrophobic powder or otherwise fragmented and attached to the surface of any object to render it super hydrophobic or super hydrophilic. The surface properties of the porous material may also be altered locally by photografting with selected monomers.
机译:仅需一步就可广泛应用的方法有助于在各种基底如玻璃,金属,塑料,纸张,木材,混凝土和砖石上制备大面积超疏水或超亲水表面。该技术涉及在模具中或在自由表面上,在成孔溶剂存在下,普通丙烯酸或苯乙烯类单体的自由基聚合。该材料可以是半透明或完全透明的,并且取决于单体的选择,可以是超疏水的或超亲水的。因为孔隙率和双尺度粗糙度是整体材料的固有本体性质,而不仅仅是表面特性,所以可以将聚合物粉化以产生超疏水性粉末,或者将其破碎并附着在任何物体的表面上,以使其具有超疏水性或超强性。亲水的。多孔材料的表面性质也可以通过与所选单体进行光接枝而局部改变。

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