Profiling a Low Emissivity Glass Coating with ToF‐SIMS and Machine Learning

Author:

Bamford Sarah E.1,Jones Robert T.12,Gardner Wil1,Muir Benjamin W.3,Winkler David A.456,Pigram Paul J.1ORCID

Affiliation:

1. Centre for Materials and Surface Science, Department of Mathematical and Physical Sciences La Trobe University Bundoora Victoria 3086 Australia

2. Central Analytical Research Facility Queensland University of Technology Brisbane Queensland 4000 Australia

3. CSIRO Manufacturing Clayton Victoria 3168 Australia

4. Department of Biochemistry and Chemistry La Trobe Institute for Molecular Science La Trobe University Bundoora Victoria 3086 Australia

5. Monash Institute of Pharmaceutical Sciences Monash University Parkville Victoria 3052 Australia

6. School of Pharmacy University of Nottingham Nottingham NG7 2RD UK

Abstract

AbstractCharacterization of multilayer coatings in 3D presents many challenges, as composition can change by area and by depth. Compositional characteristics of the interior of multilayer coatings emerge during analysis, so are frequently discovered only through exacting retrospective investigations. Time‐of‐flight secondary ion mass spectrometry (ToF‐SIMS) can be used to elucidate such complex systems; however, data analysis is a challenge. In this work a detail presentation is done of 3D chemical characterization of a low emissivity (low‐E) double silver coating on glass using ToF‐SIMS and machine learning. An unsupervised machine learning technique, the self‐organizing map with relational perspective mapping, is used to visualize the chemical similarity between different layers of the low‐E film. Repeating layers are easily identified at the single‐voxel level, based on their entire mass spectra, and are classified as chemically indistinguishable. All major film components are identified, including the use of SnO2 as a dielectric, ZnO seeding layers, TiOx blocking layers, a Zn base layer, and a TiOx topcoat. The thin optically active silver layers are examined in detail, demonstrating subtle chemical changes with depth. This technique provides excellent insight into manufacturing processes and production challenges and has excellent potential in forensic applications.

Funder

Office of National Intelligence

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

Reference25 articles.

1. A. G. C. Flat Glass North America I. P. I. D. S. Low‐Emissivity S. C. Coating VerticalNews journalists: Journal of Engineering JOENG 2013.

2. Durability of Ag based low‐emissivity coatings

3. Investigation of silver diffusion in TiO2/Ag/TiO2 coatings

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