Wexford, PA, United States of America

Danielle Kirby

Average Co-Inventor Count = 7.9

ph-index = 1

Forward Citations = 7(Granted Patents)

Forward Citations (Not Self Cited) = 2(Sep 21, 2024)


Years Active: 2019-2023

where 'Filed Patents' based on already Granted Patents

2 patents (USPTO):
2 patents (CIPO):

Title: Celebrating the Innovations of Danielle Kirby

Introduction

Danielle Kirby, an accomplished inventor based in Wexford, Pennsylvania, has made significant strides in the field of polymer chemistry. With a total of two patents to her name, Kirby's work embodies the spirit of innovation that drives advancements in material science. Her contributions can greatly influence various industries, particularly in the formulation of innovative coatings.

Latest Patents

Danielle Kirby's most recent patents focus on curable film-forming compositions that integrate reactive functional polymers and polysiloxane resins. One of her notable inventions includes a curable film-forming composition that comprises a polymeric binder with reactive functional groups, a compatible curing agent, and a polysiloxane resin with aromatic functional groups. This combination allows for improved performance in various applications that require durable and effective coatings. Furthermore, her inventive work also includes another patent on curable film-forming compositions containing hydroxyl functional acrylic polymers and bisurea compounds, highlighting her commitment to enhancing multilayer composite coatings.

Career Highlights

Danielle Kirby is currently employed at PPG Industries Ohio, Inc., where she actively contributes to the companys mission of delivering innovative solutions in the coatings sector. Her career reflects a deep understanding of chemistry and a passion for developing advanced materials that can have a lasting impact on various commercial sectors.

Collaborations

In her journey as an inventor, Kirby collaborates with distinguished coworkers, including Jason Ryan Lewis and Matthew S. Luchansky. These collaborative efforts exemplify a team-oriented approach in research and development, leading to inventive outcomes that address real-world challenges in material applications.

Conclusion

Danielle Kirby stands as a testament to the power of innovation in the field of polymer science. Through her dedicated work and inventive spirit, she continues to pave the way for advancements that will contribute to the development of new materials and improved coatings. Her patents are noteworthy contributions that can inspire future inventions and collaborations within the industry.

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