Capillary Rise: A Simple Tool for Simultaneous Determination of Porosity and Thickness of Thin Silica Coatings

Author:

Ubuo Emmanuel E.12ORCID,Udoetok Inimfon A.3ORCID,Tyouwa Andrew T.24,Obadimu Clement O.1,Al-Shehri Hamza S.25ORCID

Affiliation:

1. Department of Chemistry, Akwa Ibom State University, Mkpat Enin 532111, Akwa Ibom State, Nigeria

2. Department of Chemistry and Biochemistry, University of Hull, Hull HU6 7RX, UK

3. Department of Chemistry and Biochemistry, University of Regina, Regina, SK S4S 0A2, Canada

4. Applied Colloid Science and Cosmeceutical Group, Department of Chemistry, Benue State University, Makurdi 970211, Benue State, Nigeria

5. Chemistry Division, King Khaled Military Academy, SANG, Riyadh 11564, Saudi Arabia

Abstract

Coating porosity is an important property that supports solid-gas and solid-liquid exchange that can either enhance various science and technological applications or promote damage if not properly controlled. However, non-destructive instrumental techniques for the measurement of porosity on coated walls or surfaces can be quite challenging. Here, a seamless capillary rise technique has been used to determine both the thickness and porosity of a thin silica coating. Uniform coatings were prepared from 5 wt% hydrophobic fumed silica in absolute ethanol and spin-coated at 500–8000 rpm on glass slides. Capillary imbibition of squalane was then controlled into known areas of the resulted hydrophobic nano-porous coatings. The mass of the solid (silica) and the infiltrated oil (squalane) were gravimetrically measured. The porosity of the material was calculated as the percentage fraction of the pore volume while the film thickness was determined as the ratio of the total volume to the area of coverage. Mean values of the porosity and coating thickness calculated from capillary impregnation technique were 86 ± 2% and 3.7 ± 0.2 μm, respectively. The coating thickness obtained was comparable with those revealed by SEM and Dektak profiler measurements. This study highlights the effectiveness of capillary rise as a simple and cost-effective non-destructive technique for assessment of coating thickness and porosity.

Publisher

MDPI AG

Subject

Engineering (miscellaneous),Ceramics and Composites

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