Solid‐State Field‐Assisted Ion Exchange (Ag → Na) in Soda–Lime Float Glass: Tin Versus Air Side

Author:

Biesuz Mattia1ORCID,Mariotto Gino2,Cassetta Michele2,Ersen Ovidiu3,Ihiawakrim Dris3,Haušild Petr4,Giopato Paolo1,Martucci Alessandro5,Bortolotti Mauro1,Sglavo Vincenzo M.16,Sorarù Gian D.1

Affiliation:

1. Department of Industrial Engineering University of Trento Via Sommarive 9 38122 Trento Italy

2. Department of Computer Science University of Verona Strada Le Grazie 15 37034 Verona

3. Institut de Physique et Chimie des Matériaux de Strasbourg Université de Strasbourg CNRS UMR 7504 F-67000 Strasbourg France

4. Faculty of Nuclear Sciences and Physical Engineering Department of Materials Czech Technical University in Prague Trojanova 13 120 00 Prague Czechia

5. Department of Industrial Engineering University of Padova Via Francesco Marzolo 9 35131 Padova Italy

6. National Council of Research Institute of Photonics and Nanotechnologies Via alla Cascata 56/C 38123 Trento Italy

Abstract

The application of a DC current allows fast (few minutes) Ag+ → Na+ ion exchange in soda–lime–silicate (SLS) glass. The effect of processing parameters, electric current, and treating time is studied on both air and tin sides of SLS float glass, and non‐Fickian diffusion is revealed. It is shown that ion exchange kinetics are similar on both sides and the tempering process results in similar mechanical properties (crack formation probability after Vickers indentation, hardness, and Young's modulus). However, the structure/microstructure of the tin and air sides is hugely different. In particular, clear silver nanoclustering takes place on the tin side, resulting in ≈8 nm metallic particles in the vicinity of the surface. The formation of nanoparticles is also coupled with a deep structural reorganization of the amorphous network and the Q n units. The nanoparticles’ size decreases moving from the surface to the interior of the glass. Silver nanoparticles are also detected on the air side, although their density and size are largely reduced. Whereas the mechanical properties measured on the air and tin side are similar, significative differences are observed in terms of optical properties.

Funder

Università degli Studi di Trento

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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