Location History:
- Midland, MI (US) (2015 - 2017)
- Wilmington, DE (US) (2021)
- Collegeville, PA (US) (2021 - 2022)
Company Filing History:
Years Active: 2015-2025
Title: Innovator in Hydrosilylation: The Contributions of Matthew Olsen
Introduction: Matthew Olsen, an inventive mind based in Midland, MI, has made substantial contributions to the field of hydrosilylation catalysts, holding an impressive five patents. His work has significant implications for the synthesis of various materials, enhancing the efficacy and versatility of chemical processes.
Latest Patents: Among his notable inventions are two recent patents related to hydrosilylation catalysts. The first patent details nickel-containing hydrosilylation catalysts and compositions, which includes a hydrosilylation reaction catalyst combined with an aliphatically unsaturated compound. This innovative composition is designed to react via hydrosilylation to produce reaction products such as silanes, gels, rubbers, and resins. The metal-ligand complex used in this catalyst can be created by reacting metal precursors with ligands.
The second patent revolves around ruthenium-containing hydrosilylation catalysts and similar compositions containing these catalysts. Like the previous invention, it outlines a method that pairs a hydrosilylation reaction catalyst with an aliphatically unsaturated compound, facilitating the formation of various reaction products through hydrosilylation.
Career Highlights: Matthew Olsen’s career has been marked by his association with Dow Corning Corporation, a leader in silicone and advanced materials. His innovative spirit and dedication to chemical innovation continue to drive advancements in the field, particularly in the development of efficient catalysts that simplify complex chemical reactions.
Collaborations: Throughout his career, Matthew has worked closely with colleagues such as Simon Cook and Kurt Friedrich Brandstadt, collaborating on projects that enhance the application of hydrosilylation catalysts. These partnerships exemplify the cooperative effort in the scientific community that leads to breakthroughs in technology and industrial applications.
Conclusion: Matthew Olsen stands as a prominent figure in the realm of chemical innovations, particularly in hydrosilylation catalysis. His contributions are not only pivotal for the advancement of material sciences but also reflect his commitment to enhancing industrial processes through innovative chemistry. As he continues to develop new technologies within Dow Corning Corporation, the impact of his work will likely resonate throughout various sectors of the industry.