Haifa, Israel

David Eisenberg


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: David Eisenberg - Innovator in Graphene Technology

Introduction

David Eisenberg is a talented inventor based in Haifa, Israel, recognized for his groundbreaking work in the field of materials science, specifically in the production of graphene. With a focus on sustainable methods, he has developed innovative techniques that contribute to the advancement of carbon materials.

Latest Patents

Eisenberg holds a patent entitled "Low-temperature pyrolysis of organic acid salts providing graphene rich carbons." This patent details methods for pyrolytically producing carbons that comprise graphene sheets at temperatures below 800°C. Uniquely, the graphene sheets are not substantially stacked, which distinguishes his methods from conventional approaches that often lead to graphite formation. The patent also includes techniques for producing heavily nitrogen-doped graphene, expanding the functionality and application of these materials.

Career Highlights

David Eisenberg is affiliated with the prestigious Massachusetts Institute of Technology (MIT), where he conducts research that pushes the boundaries of material innovation. His contributions not only enhance scientific understanding but also have practical implications for various industries that utilize graphene.

Collaborations

Throughout his career, Eisenberg has had the opportunity to collaborate with esteemed colleagues, including Adam Heller and Joo-Woon Lee. Together, they have worked on projects that leverage their collective expertise to explore and develop advanced materials.

Conclusion

David Eisenberg is a notable figure in the realm of graphene technology, making significant strides in the methods of carbon production. His patent and ongoing research at MIT reflect his commitment to innovation, which can have a lasting impact on various scientific fields and industries. With his impressive background, he is set to continue making valuable contributions to the world of materials science.

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