Washington, DC, United States of America

Felipe Bulat-Jara


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2016-2017

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2 patents (USPTO):Explore Patents

Title: Innovations of Felipe Bulat-Jara in Hydrogenated Graphene

Introduction

Felipe Bulat-Jara is an accomplished inventor based in Washington, DC. He has made significant contributions to the field of materials science, particularly in the development of hydrogenated graphene. With a total of two patents to his name, his work focuses on enhancing the properties of graphene for various applications.

Latest Patents

Felipe's latest patents include "Hydrogenated graphene with surface doping and bandgap tunability" and "Surface doping and bandgap tunability in hydrogenated graphene." The first patent describes a graphene compound created through a method involving the preparation of graphene flakes or chemical vapor deposition (CVD) grown graphene films on a SiO/Si substrate. This process includes exposing the graphene to hydrogen plasma, performing hydrogenation, and tuning the bandgap through the application of an electric field. The second patent outlines a method for introducing a bandgap in single-layer graphite on a SiO substrate, which also involves hydrogenation and controlling the majority carrier type via surface adsorbates.

Career Highlights

Felipe Bulat-Jara works for the United States as represented by the Secretary of the Navy. His role involves research and development in advanced materials, contributing to the Navy's technological advancements. His innovative work has positioned him as a key figure in the field of graphene research.

Collaborations

Felipe has collaborated with notable colleagues, including Jeffrey W. Baldwin and Bernard R. Matis. These collaborations have further enhanced the impact of his research and innovations in the field.

Conclusion

Felipe Bulat-Jara's contributions to the field of hydrogenated graphene demonstrate his commitment to advancing materials science. His patents reflect innovative approaches to enhancing graphene's properties, which could lead to significant advancements in various technological applications.

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