Seattle, WA, United States of America

Katerina Macounova

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 68(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: Katerina Macounova: Innovator in Electroosmotic Mixing Technology

Introduction

Katerina Macounova is a prominent inventor based in Seattle, WA (US). She has made significant contributions to the field of fluid dynamics, particularly in the development of electroosmotic mixing devices. Her innovative work has the potential to enhance various applications in microfluidic technology.

Latest Patents

Katerina holds a patent for her invention titled "Meso- and microfluidic continuous flow and stopped flow electroosmotic mixer." This device is designed for mixing one or more fluids in meso- or microfluidic device applications. The mixer allows for batch or continuous mixing without altering the geometry of existing flow paths. The degree of mixing can be controlled by various factors, including the length of the electrodes, flow rate, and voltage applied. This invention is particularly effective for fluids with low ionic strength, making it a valuable tool in the field.

Career Highlights

Katerina Macounova is affiliated with the University of Washington, where she continues to advance her research in fluid dynamics and electroosmotic technologies. Her work has garnered attention for its practical applications and innovative approach to fluid mixing.

Collaborations

Katerina has collaborated with notable colleagues, including Paul Yager and Mark R Holl. These partnerships have contributed to the development and refinement of her inventions, further enhancing their impact in the scientific community.

Conclusion

Katerina Macounova is a trailblazer in the field of electroosmotic mixing technology. Her innovative patent and ongoing research at the University of Washington highlight her commitment to advancing fluid dynamics. Her contributions are poised to make a significant impact in various applications within the microfluidic domain.

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