Plainsboro, NJ, United States of America

Cem B Ustundag

This inventor holds 1 USPTO granted patent. Top assignee: Princeton University. Active years: 2021.


% Patents Active = 100.0

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: **Cem B. Ustundag: Innovator in Electrohydrodynamic Technology**

Introduction

Cem B. Ustundag, based in Plainsboro, NJ, is a notable inventor whose contributions to the field of electrohydrodynamics are gaining recognition. With a focus on the development of innovative methods for the deposition of carbonaceous materials, Ustundag's work reflects a deep commitment to advancing materials science.

Latest Patents

Ustundag holds a patent for "Electrohydrodynamically Formed Structures of Carbonaceous Material." This patent details a sophisticated method for the electrohydrodynamic deposition of carbonaceous materials. The process involves using an electrohydrodynamic cell with two conductive electrodes, where a suspension of carbonaceous material is strategically placed between the electrodes. By applying and manipulating electric fields, Ustundag's method allows for precise control over the deposition process and the formation of durable structures. Key aspects of his innovative method include the ability to vary electrode spacing, adjust suspension properties, and modify the electric field parameters for optimal results.

Career Highlights

Cem B. Ustundag is associated with Princeton University, where he leverages his technical expertise and innovative thinking to foster advancements in materials science. His work is characterized by a unique intersection of theoretical knowledge and practical application, making significant strides in electrohydrodynamic technology.

Collaborations

Ustundag collaborates with esteemed colleagues Ilhan A. Aksay and Valerie Alain-Rizzo, both of whom contribute to the collective goal of exploring new frontiers in materials science and engineering. Their combined efforts facilitate a rich environment for innovation and research, positioning their collective work at the forefront of technology development in their field.

Conclusion

In summary, Cem B. Ustundag’s contributions to electrohydrodynamic technology are noteworthy and illustrate the potential impact of innovative deposition methods on material science. As he continues to develop and refine his techniques, the implications of his research may inspire future advancements that harness the power of electrical fields in material formation. The collaboration with other experts also indicates a promising trajectory for continued innovation in this critical area of research.

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