Düsseldorf, Germany

Patricia J Tegeder

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Patricia J. Tegeder: Innovator in Curable Compositions

Introduction

Patricia J. Tegeder, a distinguished inventor based in Düsseldorf, Germany, has made significant contributions to the field of materials science. With a focus on innovative curable compositions, she holds a patent that showcases her expertise and creativity in developing advanced materials.

Latest Patents

Tegeder's sole patent, titled "Curable composition comprising polyaziridine and oxidized boron nitride particles, method of curing the same, and cured composition," presents a novel curable composition that incorporates oxidized boron nitride particles and polyaziridine. This innovative formulation includes oxidized boron nitride particles featuring a hydrated boron oxide surface layer on a boron nitride core. The patent also details a method for curing and describes the resulting cured reaction product, emphasizing its potential applications in various industries.

Career Highlights

Patricia J. Tegeder is affiliated with 3M Innovative Properties Company, a leader in technological advancements and innovation. Throughout her career, she has focused on developing new materials that enhance performance and durability, enabling significant advancements in several applications. Her dedication to research and development has solidified her reputation as a skilled inventor.

Collaborations

In her professional journey, Tegeder has collaborated with talented individuals such as Martin Engler and Ricardo Mizoguchi Gorgoll. These collaborations highlight her ability to work as part of a team, combining diverse expertise to drive innovation and push the boundaries of current technology.

Conclusion

Patricia J. Tegeder stands out as a prominent figure in the field of curable compositions, exemplifying the essence of innovation through her patented work. Her continuing contributions to materials science, backed by her collaboration with peers, reflect a commitment to pushing the boundaries of technology and enhancing industrial applications.

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