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Continuous fiberizing by laser melting (Cofiblas): Production of highly flexible glass nanofibers with effectively unlimited length

F. Quintero, J. Penide, A. Riveiro, J. del Val, R. Comesaña, F. Lusquiños, J. Pou

2020Science Advances14 citationsDOIOpen Access PDF

Abstract

The development of nanofibers is expected to foster the creation of outstanding lightweight nanocomposites and flexible and transparent composites for applications such as optoelectronics. However, the reduced length of existing nanofibers and nanotubes limits mechanical strengthening and effective manufacturing. Here, we present an innovative method that produces glass nanofibers with lengths that are, effectively, unlimited by the process. The method uses a combination of a high-power laser with a supersonic gas jet. We describe the experimental setup and the physical processes involved, and, with the aid of a mathematical simulation, identify and discuss the key parameters which determine its distinctive features and feasibility. This method enabled the production of virtually unlimited long, solid, and nonporous glass nanofibers that display outstanding flexibility and could be separately arranged and weaved.

Topics & Concepts

NanofiberMaterials scienceLaserComposite materialNanotechnologyOpticsPhysicsSurface Modification and SuperhydrophobicityElectrospun Nanofibers in Biomedical ApplicationsAdditive Manufacturing and 3D Printing Technologies