Characterisation of surface properties of chemical and plasma treated regenerated cellulose fabric

Author:

Peršin Zdenka12,Vesel Alenka1,Kleinschek Karin Stana12,Mozetič Miran3

Affiliation:

1. Centre of Excellence for Polymer Materials and Technologies, Ljubljana, Slovenia

2. University of Maribor, Faculty of Mechanical Engineering, Laboratory for Characterisation and Processing of Polymers, Slovenia

3. Jožef Stefan Institute, Department of Surface Engineering and Optoelectronics, Plasma Laboratory, Slovenia

Abstract

The aim of this research work was to study the surface properties and sorption characteristics of differently treated regenerated cellulose fabrics. Surface modifications of viscose, modal and lyocell samples caused by using standard chemical pre-treatment procedures were compared to an alternative activation procedure by applying low pressure oxygen plasma treatment. The elemental chemical composition of the modified fabric surfaces was investigated using X-ray photoelectron spectroscopy (XPS), while hydrophilic/hydrophobic properties were evaluated by determining the water contact angles, as well as thoroughly analysed using Owens–Wendt surface energy (SFE) and surface polarity investigations. Standard chemical and also plasma treatments changed the surface chemistry of cellulose. Bleaching and alkaline treatments increased the surface carboxylic acid content by approximately 4.8% while plasma treatment increased it by approximately 9.7%. As a consequence, higher hydrophilicity arises as proved by water contact angle decrease; i.e. 24% (61°) after standard chemical treatments and 70% (20°) after plasma treatment. Both chemical treatments increase the SFE and polar components, while the reduction of dispersive components was less pronounced. The oxygen activation treatment has the greatest influence on the SFEs of the samples as well as on polarity of the samples.

Publisher

SAGE Publications

Subject

Polymers and Plastics,Chemical Engineering (miscellaneous)

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