Three-dimensional printing of silica glass with sub-micrometer resolution

Author:

Huang Po-HanORCID,Laakso Miku,Edinger Pierre,Hartwig OliverORCID,Duesberg Georg S.,Lai Lee-Lun,Mayer Joachim,Nyman JohanORCID,Errando-Herranz CarlosORCID,Stemme Göran,Gylfason Kristinn B.ORCID,Niklaus FrankORCID

Abstract

AbstractSilica glass is a high-performance material used in many applications such as lenses, glassware, and fibers. However, modern additive manufacturing of micro-scale silica glass structures requires sintering of 3D-printed silica-nanoparticle-loaded composites at ~1200 °C, which causes substantial structural shrinkage and limits the choice of substrate materials. Here, 3D printing of solid silica glass with sub-micrometer resolution is demonstrated without the need of a sintering step. This is achieved by locally crosslinking hydrogen silsesquioxane to silica glass using nonlinear absorption of sub-picosecond laser pulses. The as-printed glass is optically transparent but shows a high ratio of 4-membered silicon-oxygen rings and photoluminescence. Optional annealing at 900 °C makes the glass indistinguishable from fused silica. The utility of the approach is demonstrated by 3D printing an optical microtoroid resonator, a luminescence source, and a suspended plate on an optical-fiber tip. This approach enables promising applications in fields such as photonics, medicine, and quantum-optics.

Funder

Stiftelsen för Strategisk Forskning

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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