色色啦

News

Sustainable optical fibres developed from methylcellulose

Researchers from Tampere University and Aalto University have developed optical fibres from methylcellulose, a commonly used cellulose derivative. The finding opens new avenues to short-distance optical fibres using sustainable and environmentally benign fibre processing. The finding was published in the journal Small.
Luonnoskuva valokuiduista. Kuva: Ville Hynninen and Nonappa.
Schematic illustration of a light coupled optical fibre and photographs of methylcellulose-based optical fibers under ambient light and UV light. Image: Ville Hynninen and Nonappa

The state-of-the-art silica glass optical fibres can carry light signals over tens of kilometres with very low optical loss and provide high-capacity communication networks. However, their brittleness, low stretchability and energy intensiveness make them less suitable for local short-range applications and devices such as automotive, digital home appliances, fabrics, laser surgery, endoscopy and implantable devices based on optical fibres. The sustainable solution to these may be found within biopolymer-based optical fibres.

'The wide availability of cellulosic raw materials provides an excellent opportunity to unravel the hidden potential of renewable materials for practical applications through sustainable fibre processing routes,' says Associate Professor Nonappa, whose research team at Tampere University is developing biopolymer-based optical fibres for short-distance applications.

Conventionally, the polymer or plastic optical fibres are used for short-distance applications, but their processing may involve relatively high temperatures and the use of hazardous chemical treatment.

'By using methylcellulose hydrogel, we have shown that optical fibres can be produced at room temperature using a simple extrusion method without any chemical crosslinkers. The resulting fibres are highly transparent, mechanically robust, flexible and show low optical loss,' Nonappa states.

Biopolymer-based optical fibres suitable for multifunctional sensors

In addition to pure light signal transmission, the methylcellulose optical fibres can be feasibly modified and functionalized.

'The hydrogel matrix allows straightforward addition of various molecules and nanoparticles without compromising the mechanical properties or light propagation abilities of the fibres making them suitable for multifunctional sensors', says doctoral researcher Ville Hynninen, the first author of the paper.

For example, incorporating an extremely low mass fraction of protein-coated gold nanoclusters produced luminescent optical fibres, and acted also as a fibre-based toxic metal ion sensor.

Overall, the presented results and the abundance of cellulosic derivatives and raw materials encourage further research and optimization of cellulose-derived optical components and devices.

The work results from a collaboration between the research groups of Professor Nonappa at Tampere University and Professor Olli Ikkala and Professor Zhipei Sun at Aalto University. The research was performed under the framework of the Academy of Finland麓s (PREIN), flagships and HYBER Centre of Excellence.

Read the full article 鈥溾漺hich was published in Small.

Olli Ikkala

Aalto Distinguished Professor
  • Updated:
  • Published:
Share
URL copied!

Read more news

Samu Taulu
Appointments, Research & Art Published:

Samu Taulu develops next-generation brain imaging methods

Associate Professor of neurostimulation and neuroimaging Samu Taulu develops more precise methods for understanding the brain
Winners on stage for the EAA best student paper award
Awards and Recognition, Research & Art Published:

EAA Best Paper and Presentation Award for Young Researchers for postdoctoral researcher Thomas Deppisch

The awarded work shows how speech can be made clearer in noisy environments while still preserving directional cues
Curly-haired woman speaks into a microphone indoors, standing next to a screen.
Research & Art Published:

Professor Hanna Maylett: 鈥淲ithout time spent together, a shared vision cannot emerge鈥

According to Hanna Maylett, associate professor of film directing, a director doesn鈥檛 need to know all the answers; rather, their role is to create a process through which those answers can be discovered together.
Alex and Lucie Lampen
Cooperation, Research & Art Published:

From humble beginnings to a captain of industry 鈥 a visionary鈥檚 final gift lives on at Aalto University

The Lamp茅n bequest supports Aalto University chemical engineering students and future professionals through scholarships. Honorary counsellor and Master of Science (Technology) in chemical engineering Aleksander Lamp茅n was a significant pioneer in the Finnish wood processing and cellulose industries. His legacy continues to promote internationalisation and high-quality research in the field of bioproduct technology. A donation 色色啦 University is an impactful investment in education, innovation and the renewal of society.