University of Helsinki, Finland

Lasse Kyllönen


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Lasse Kyllönen

Introduction

Lasse Kyllönen is a prominent inventor based at the University of Helsinki, Finland. With his innovative approach to materials science, he has contributed significantly to the field of wood treatment technology. His singular patent showcases his dedication to protecting wood from microorganisms through a unique chemical modification method.

Latest Patents

Lasse Kyllönen holds a patent for a method of treating wood with an organic phosphonate salt in a liquid phase. This process chemically modifies the wood's surface, offering enhanced protection against microorganisms. The organic phosphonate salts involved are of Formula III, where certain radicals and cations work together to create an effective wood treatment solution. This innovative method also includes the disclosure of products comprised of raw materials treated according to this patented technique.

Career Highlights

Throughout his career, Lasse Kyllönen has gained valuable experience working with esteemed companies such as Stora Enso Oyj and Tikkurila Oyj. His roles in these organizations have allowed him to refine his expertise in material treatment processes and contribute to advancements in the field of wood protection technologies.

Collaborations

In his journey as an inventor, Lasse has collaborated with skilled professionals, including Pirkko Karhunen and Jorma Matikainen. These partnerships have enriched his work, enabling him to share ideas and drive innovations that address contemporary challenges in wood preservation.

Conclusion

Lasse Kyllönen exemplifies the spirit of innovation and dedication within the realm of wood treatment technologies. His patent demonstrates not only his inventive prowess but also his commitment to sustainable practices in protecting natural resources. As a key contributor to his field, Kyllönen’s work continues to pave the way for future advancements in material science.

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