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Synthesis of vacancy-rich titania particles suitable for the additive manufacturing of ceramics. | LitMetric

Synthesis of vacancy-rich titania particles suitable for the additive manufacturing of ceramics.

Sci Rep

Department of Electrical Engineering, Ecole de Technologie Superieure, 1100 Notre-Dame West, Montreal, QC, H3C 1K3, Canada.

Published: September 2022

In the last decades, titania (or TiO) particles played a crucial role in the development of photo-catalysis and better environmentally-friendly energy-harvesting techniques. In this work, we engineer a new generation of TiO particles rich in oxygen vacancies using a modified sol-gel synthesis. By design, these vacancy-rich particles efficiently absorb visible light to allow carefully-controlled light-induced conversion to the anatase or rutile crystalline phases. FTIR and micro-Raman spectroscopy reveal the formation of oxygen vacancies during conversion and explain this unique laser-assisted crystallization mechanism. We achieve low-energy laser-assisted crystallization in ambient environment using a modified filament 3D printer equipped with a low-power laser printhead. Since the established high-temperature treatment necessary to convert to crystalline TiO is ill-suited to additive manufacturing platforms, this work removes a major fundamental hurdle and opens whole new vistas of possibilities towards the additive manufacturing of ceramics, including carefully-engineered crystalline TiO substrates with potential applications for new and better photo-catalysis, fuel cells and energy-harvesting technologies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9474447PMC
http://dx.doi.org/10.1038/s41598-022-19824-yDOI Listing

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