Copenhagen, Denmark

Simon Lausten Östergaard


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: Simon Lausten Östergaard: Innovator in Photocatalytic Applications

Introduction

Simon Lausten Östergaard is a notable inventor based in Copenhagen, Denmark. He has made significant contributions to the field of photocatalysis, particularly through his innovative methods of applying photocatalytic dispersions. His work is characterized by a commitment to advancing technology that can have a positive impact on various applications.

Latest Patents

Östergaard holds a patent for a method of applying a photocatalytic dispersion on paper. This method involves several steps, including impregnating paper with a thermosetting resin, drying the resin-impregnated paper, applying a photocatalytic dispersion that comprises photocatalytic nanoparticles on the dried, resin-impregnated paper, and finally drying the paper again after the application of the photocatalytic dispersion. This innovative approach enhances the functionality of paper products through the incorporation of photocatalytic properties.

Career Highlights

Simon Lausten Östergaard is associated with Valinge Photocatalytic AB, where he continues to develop and refine his inventions. His work at the company reflects a dedication to research and development in the field of photocatalysis, contributing to advancements that can lead to more sustainable and efficient materials.

Collaborations

Östergaard collaborates with talented individuals such as Hans Persson and Marcus Bergelin. These partnerships foster an environment of innovation and creativity, allowing for the exchange of ideas and expertise in the field.

Conclusion

Simon Lausten Östergaard is a prominent figure in the realm of photocatalytic innovations. His patented methods and collaborative efforts exemplify the spirit of invention that drives progress in technology. His contributions are paving the way for future advancements in photocatalytic applications.

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