Superhydrophobic PVC/SiO2 Coating for Self-Cleaning Application
Author | Sutar, R.S. |
Author | Kalel, P.J. |
Author | Latthe, S.S. |
Author | Kumbhar, D.A. |
Author | Mahajan, S.S. |
Author | Chikode, P.P. |
Author | Patil, S.S. |
Author | Kadam, S.S. |
Author | Gaikwad, V.H. |
Author | Bhosale, A.K. |
Author | Sadasivuni, Kishor Kumar |
Author | Liu, S. |
Author | Xing, R. |
Available date | 2022-03-23T06:35:53Z |
Publication Date | 2020 |
Publication Name | Macromolecular Symposia |
Resource | Scopus |
Identifier | http://dx.doi.org/10.1002/masy.202000034 |
Abstract | A lotus leaf like self-cleaning superhydrophobic coating has high demand in industrial applications. Such coatings are prepared by alternative dip and spray deposition techniques. A layer of polyvinyl chloride is applied on glass substrate by dip coating and then spray coated a suspension of hydrophobic silica nanoparticles at substrate temperature of 50 °C. This coating procedure is repeated for three times to achieve rough surface morphology which exhibits a water contact angle of 169 ± 2° and sliding angle of 6°. The superhydrophobic state of the coating is still preserved when water volume of 1.2 L is used to impact the water drops on coating surface. The stability of the wetting state of the coating is analyzed against the water jet, adhesive tape and sandpaper abrasion tests. The prepared superhydrophobic coating strongly repelled the muddy water suggesting its importance in self-cleaning applications. |
Sponsor | This work was financially supported by DST?INSPIRE Faculty Scheme, Department of Science and Technology (DST), Govt. of India. [DST/INSPIRE/04/2015/000281]. SSL acknowledges financial assistance from the Henan University, Kaifeng, P. R. China. The authors greatly appreciate the support of the National Natural Science Foundation of China (21950410531). |
Language | en |
Publisher | Wiley-VCH Verlag |
Subject | PVC roughness superhydrophobic and self-cleaning wetting |
Type | Article |
Issue Number | 1 |
Volume Number | 393 |
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Center for Advanced Materials Research [1378 items ]