Omaha, NE, United States of America

Jennifer A Black



Average Co-Inventor Count = 2.9

ph-index = 4

Forward Citations = 42(Granted Patents)


Location History:

  • Bennington, NE (US) (2007)
  • Omaha, NE (US) (2007 - 2010)
  • Woburn, MA (US) (2021 - 2022)

Company Filing History:


Years Active: 2007-2022

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9 patents (USPTO):Explore Patents

Title: Innovations of Jennifer A Black in Nanotube Fabric Technology

Introduction

Jennifer A Black is a prominent inventor based in Omaha, NE (US), known for her significant contributions to the field of nanotube technology. With a total of nine patents to her name, she has made remarkable advancements in the characterization and formation of nanotube fabrics. Her work focuses on controlling surface roughness and the degree of rafting in nanotube formulations, which has important implications for various applications.

Latest Patents

Jennifer's latest patents include innovative methods for characterizing nanotube formulations for nanotube fabrics with controlled surface roughness and degree of rafting. These methods disclose techniques for characterizing a nanotube formulation concerning specific ionic species. This characterization allows for the control of surface roughness and rafting within the nanotube fabric. Additionally, her patents describe methods for forming nanotube fabrics by adjusting the concentration levels of selected ionic species within the nanotube formulation. This approach enables the production of nanotube fabrics that are smooth and exhibit a low degree of rafting.

Career Highlights

Throughout her career, Jennifer has worked at Creighton University, where she has contributed to research and development in nanotube technology. Her expertise in this area has led to significant advancements in the understanding and application of nanotube formulations.

Collaborations

Jennifer has collaborated with notable colleagues, including Kenneth S Thomson and Ellen S Moland, who have contributed to her research endeavors.

Conclusion

Jennifer A Black's innovative work in nanotube technology has paved the way for advancements in the field, particularly in the development of fabrics with controlled properties. Her contributions continue to influence research and applications in this exciting area of technology.

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