Abstract

Self-cleaning surfaces may have wide applications such as microfluidic devices, lab-on-a-chip, sensors, microreactors, air purification, and antimicrobial fields. In this article, by using a combination of femtosecond (fs) laser irradiation and fluorination technique, self-cleaning stainless steel surfaces with unique antifouling property were obtained. New insight is developed through a detailed analysis of the antifouling behavior of the self-cleaning surfaces. The surface free energy and its polar and disperse components were calculated by using the Owens–Wendt-–Rabel–Kaelble (OWRK) method. X-ray photoelectron spectroscopy was employed to analyse the surface elemental compositions and functional groups. The antifouling property of the surface was recorded by using a high speed camera. Water sliding angles (SAs) were reduced by fluorination treatment, resulting in low adhesive superhydrophobic surfaces with the self-cleaning property. The influences of micro/nanostructures, fluorination, and their combination on the surface free energy were investigated. The interaction process between water droplets and pollutants (inorganic and organic particles) on the treated surface was explored. The antifouling property of an optimized specimen (CA = 162° and SA = 1°) was tested and compared with the untreated sample.

Highlights

  • Contaminants on surfaces may threaten the health of people and the quality of products

  • laser-induced periodic surface structures (LIPSSs) on 304SS are located at F lower than 1 J/cm2

  • With increasing F, the nodular structures start to form. e two types of structures have different formation mechanism and different structure properties. is result is consistent with literatures [3, 11, 28], indicating that, at low fluences (

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Summary

Introduction

Contaminants on surfaces may threaten the health of people and the quality of products. Its surface free energy was greatly reduced by a fluorination process to achieve excellent self-cleaning property. The fluorination process was performed to reduce surface free energy.

Results
Conclusion

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