Advanced search
Start date
Betweenand
(Reference retrieved automatically from Web of Science through information on FAPESP grant and its corresponding number as mentioned in the publication by the authors.)

Towards the development of superhydrophilic SiO2-based nanoporous coatings: concentration and particle size effect

Full text
Author(s):
Chiba de Castro, Lucas Daniel [1] ; Larocca, Nelson Marcos [1] ; Pessan, Luiz Antonio [1]
Total Authors: 3
Affiliation:
[1] Univ Fed Sao Carlos, Dept Mat Engn, Via Washington Luiz, Km 235, BR-13565905 Sao Carlos, SP - Brazil
Total Affiliations: 1
Document type: Journal article
Source: Thin Solid Films; v. 651, p. 138-144, APR 1 2018.
Web of Science Citations: 7
Abstract

Superhydrophilic nanoporous coatings were prepared from layer-by-layer assembled silica nanoparticles (SiO2) and a polycation. As expected, concentration of silica dipping suspension and particle size are closely related to thickness of the obtained multilayer films. However, wettability might not to be mainly governed by coating thickness as usually reported on literature; instead, superficial homogeneity should be carefully considered. It was found that if a uniform nanoporous structure is obtained, superhydrophilic behavior is observed and, at least for the studied system, increases in coating thickness are not followed by improvements on wetting performance. In turn, for obtaining uniform structures, the usage of dipping suspension with a hypothetical minimum silica nanoparticles concentration is mandatory. Below such critical value, stacking defects along the coating surface are observed and the manifestation of superhydrophilicity is inhibited. As an additional feature, low refractive indices of multilayer coatings resulting from nanoporosity was found to provide good antireflection (AR) properties. (AU)

FAPESP's process: 15/20052-0 - Development of bioinspired superhydrophobic coatings via layer-by-layer deposition
Grantee:Lucas Daniel Chiba de Castro
Support Opportunities: Scholarships in Brazil - Doctorate