Arnhem, Netherlands

Angelique Antonia Theresia Hendrikus Radier


 

Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: Angelique Antonia Theresia Hendrikus Radier: Innovator in Graphene Technology

Introduction

Angelique Antonia Theresia Hendrikus Radier is a prominent inventor based in Arnhem, Netherlands. She has made significant contributions to the field of materials science, particularly in the development of graphene technologies. Her innovative work has led to the creation of a unique process for spinning graphene ribbon fibers.

Latest Patents

Radier holds a patent for a "Process for spinning graphene ribbon fibers." This groundbreaking method involves unzipping carbon nanotubes to form graphene ribbons, which are then purified and dried. The ribbons are dissolved in a suitable solvent, preferably a super acid, to create a spin-dope. The spin-dope is spun in such a way that the resulting fibers are guided into a coagulation medium, where they are coagulated. The final product consists of coagulated graphene ribbon fibers that are stripped, neutralized, washed, and wound onto bobbins. This innovative process has the potential to revolutionize the manufacturing of graphene-based materials.

Career Highlights

Radier is currently employed at Teijin Aramid B.V., where she continues to advance her research in graphene technologies. Her work has garnered attention in the scientific community, and she is recognized for her expertise in the field.

Collaborations

Throughout her career, Radier has collaborated with notable colleagues, including Bernardus Maria Koenders and Jacobus Johannes Meerman. These partnerships have contributed to the advancement of her research and the successful development of her patented processes.

Conclusion

Angelique Antonia Theresia Hendrikus Radier is a trailblazer in the field of graphene technology, with her innovative processes paving the way for future advancements. Her contributions to materials science are significant and continue to inspire further research and development in the industry.

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