This inventor holds 1 USPTO granted patent. Top assignee: The State University of New York. Active years: 2014.
Company Filing History:
Years Active: 2014
Title: **Innovative Contributions of Paul Masih Das in Graphene Synthesis**
Introduction
Paul Masih Das is a noteworthy inventor based in Lawrence, NY, whose contributions to the field of materials science have significant implications for various industries. With a focus on the synthesis of graphene, Das has successfully patented a method that enhances the production of graphene sheets, showcasing his commitment to advancing innovation.
Latest Patents
Das holds a patent for a groundbreaking method titled "Chemical synthesis for graphene sheets greater than 1 µm in length." This innovative process entails combining graphitic oxide with a solvent in a specific ratio of 50:50 to 80:20 deionized water and ethanol, creating a graphitic oxide solution. Through careful mixing with a solution of NaBH and deionized water, he develops a mixture with a concentration ranging from 10 mmolar to 20 mmolar NaBH. The application of heat, maintained between 25°C to 85°C for 3 to 30 minutes, results in the creation of graphene sheets that exceed 1 µm in length.
Career Highlights
Das is affiliated with the State University of New York, where he conducts research and contributes to advancements in material science. His focus on graphene synthesis not only demonstrates his expertise but also highlights his role in pushing the boundaries of current technological capabilities.
Collaborations
Throughout his career, Das has collaborated with esteemed colleagues, including Miriam Rafailovich and Rebecca Isseroff, who have undoubtedly enriched the research environment with their insights and expertise. This collaborative spirit has helped foster innovation within the team, leading to successful outcomes in their research endeavors.
Conclusion
In summary, Paul Masih Das has made significant strides in the world of graphene synthesis through his inventive patent. His position at the State University of New York and collaborations with fellow researchers illustrate his dedication to the field. As innovations in materials science continue to unfold, Das's contributions will likely impact various applications and industries in the future.
