News

Transparent wood-based coating doesn’t fog up

Coatings made from a wood by-product can keep our glasses and windshields clear
Värikkäitä ja läpinäkyviä pinnoitenäytteitä puupölkyn päällä.
Lignin nanoparticles form colourful coatings when they are applied as multilayer films. Photo: Alexander Henn / Aalto University

Researchers have developed a way to turn a waste material from wood into a bio-based transparent film that can be used for anti-fogging or anti-reflective coatings on glasses or vehicle windows. In addition to offering an alternative to the toxic synthetic materials currently used, this approach transforms a waste product into a valuable carbon sink.

Lignin is an abundant waste product in paper and pulp production that is very difficult to process, so it’s usually burned to produce heat. Creating lignin nanoparticles to use for anti-fogging coatings isn’t a new idea, but scientists haven’t yet been able to turn them into transparent films.

‘Optical coatings need to be transparent, but so far, even rather thin lignin particle films have been visible. We knew that small particles appear less turbid, so I wanted to see if I could make invisible particle films by pushing the particle size to a minimum,’ says doctoral researcher Alexander Henn, the study’s lead author. The team used acetylated lignin and developed an improved way to esterify it in a reaction that takes just a few minutes and happens at the relatively low temperature of 60 °C.

‘The lignin particles I made from the acetylated lignin had rather surprising properties, which made the rest of this study very interesting. The possibility to make photonic films, for example, came as a total surprise,’ says Henn.

In addition to anti-fogging and anti-reflective coatings, the new approach can also make coloured films from lignin nanoparticles. By controlling the thickness of the coating and using multi-layer films, the team created materials with different structural colours.

Sahar Babaeipour’s efforts were key to controlling the particles’ photonic properties,’ says Henn, adding that researchers Paula Nousiainen and Kristoffer Meinander brought expertise in lignin chemistry and photonic phenomena, respectively, helping the team make sense of their results and use them effectively.

Ihminen pitelee silmälaseja, joissa toinen linssi on huurussa ja toinen ei.
Doctoral researcher Alexander Henn demonstrates the anti-fogging in eyewear. Photo: Alexander Henn / Aalto University

According to the team’s feasibility study, the ease of the reaction and its high yield mean that it could profitably be scaled up to industrial levels. ‘Lignin-based products could be commercially valuable and simultaneously act as carbon sinks, helping relieve the current fossil fuel-dependence and reduce carbon dioxide emissions,’ says Professor Monika Österberg. ‘High value-added applications like this are important to drive lignin valorisation and move us away from using lignin only as a fuel.’

Henn notes the study benefited from having perspectives that took it beyond the lab bench. ‘Teamwork was an important part of making this study impactful. We were able to include the techno-economic analysis with the help of Professor Pekka Oinas and doctoral researcher Susanna Forssell,’ he says. 

The study was published in Chemical Engineering Journal and was carried out as part of FinnCERES, the Academy of Finland’s flagship centre for materials bioeconomy research.

  • Published:
  • Updated:

Read more news

Apulaisprofessori Viktar Asadchy. Kuva: Aalto-yliopisto / Jaakko Kahilaniemi
Awards and Recognition Published:

Viktar Asadchy receives Young Scientist Award

The Finnish Foundation for Technology Promotion awarded Assistant Professor Viktar Asadchy with the Young Scientist 2024 Award.
Researchers in front of Dipoli in a snowy landscape in Otaniemi
Cooperation, Research & Art Published:

Preserving intangible cultural heritage through immersive XR experiences

Aalto University’s Department of Art and Media is coordinating a European wide project on preserving intangible cultural heritage and using it to address societal challenges with the help of immersive XR environments.
In leaf-like bubbles, different icons refering to e.g. books, gardening, and bicycling
Research & Art, Studies Published:

Find our doctoral community at Aalto Social

Follow the posts, share and discuss anything related to doctoral education at Aalto Social.
Research & Art Published:

Aalto computer scientists in CHI 2024

Ten papers from Aalto CS were accepted to the CHI 2024 conference