- Previous Article
- Next Article
- Table of Contents
Thin Solid Films, Vol.518, No.18, 5033-5039, 2010
Differential superhydrophobicity and hydrophilicity on a thin cellulose layer
Here we have developed cellulosic materials (cotton fabric or paper) with differential superhydrophobicity and hydrophilicity on each side of the surfaces by coating with polyvinylidene fluoride and fluorinated silane molecules using electro-spraying. Such materials are advantageous in various textile and medical applications. Analysis of surface morphology indicated that, not only surface chemical property and roughness, but also particle diameter affects surface superhydrophobicity. Smaller particle diameter enhances superhydrophobicity, if the surface roughness and surface chemical property remain constant. By controlling these three factors, superhydrophobicity with a water contact angle of more than 160 degrees can be achieved at one side of a thin cellulosic material while maintaining the hydrophilicity (contact angle is 0 degrees) at the opposite side. (c) 2010 Elsevier B.V. All rights reserved.
Keywords:Superhydrophobicity;Hydrophilicity;Cellulosic materials;Electrostatic spray deposition;Atomic force microscopy;Water contact angle;Permeability