San Jose, CA, United States of America

Margaret Hines

USPTO Granted Patents = 3 

Average Co-Inventor Count = 7.1

ph-index = 2

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 2021-2023

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3 patents (USPTO):Explore Patents

Title: Innovations of Margaret Hines in Composite Materials

Introduction

Margaret Hines is an accomplished inventor based in San Jose, CA. She has made significant contributions to the field of composite materials, holding a total of 3 patents. Her work focuses on the development of tunable carbon structures and their applications in creating advanced composite materials.

Latest Patents

Margaret's latest patents revolve around composite materials systems. These methods include producing tunable carbon structures and combining them with polymers to form composite materials. The carbon structures she works with include crinkled graphene. Her innovative methods also involve functionalizing the carbon structures, either in-situ within a plasma reactor or in a liquid collection facility. The plasma reactor features controls for tuning the specific surface area (SSA) of the resulting carbon structures. The composite materials produced from mixing these tuned carbon structures with polymers exhibit exceptional mechanical and other properties. The mechanisms that operate between the carbon structures and the polymer are also examined to yield these remarkable mechanical properties.

Career Highlights

Margaret Hines is currently employed at Lyten, Inc., where she continues to push the boundaries of material science. Her expertise in composite materials has positioned her as a key player in the industry, contributing to advancements that have practical applications in various fields.

Collaborations

Margaret collaborates with talented individuals such as Elena Rogojina and Bryce H Anzelmo. These partnerships enhance her research and development efforts, leading to innovative solutions in composite materials.

Conclusion

Margaret Hines is a pioneering inventor whose work in composite materials is shaping the future of material science. Her patents and collaborations reflect her commitment to innovation and excellence in her field.

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