Augusta, GA, United States of America

Matthew P Duncan

This inventor holds 1 USPTO granted patent. Top assignee: Sandia Corporation. Active years: 2009.


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: Matthew P Duncan: Innovator in Microfluidic Technology

Introduction

Matthew P Duncan is an accomplished inventor based in Augusta, GA (US). He has made significant contributions to the field of microfluidics, particularly through his innovative patent related to electrokinetic pumps. His work is characterized by a focus on creating efficient devices that operate without moving parts.

Latest Patents

Matthew P Duncan holds a patent for a "Method for a microfluidic weaklink device." This invention pertains to an electrokinetic (EK) pump that generates high pressures electroosmotically while maintaining those pressures without the need for mechanical components. The EK pump utilizes a polymerizable fluid that forms a pressure-retaining seal upon polymerization, typically initiated by UV radiation. This technology is particularly advantageous for weaklink devices, as it relies on predictable and reliable chemical polymerization reactions.

Career Highlights

Matthew P Duncan is currently employed at Sandia Corporation, where he continues to develop innovative solutions in the field of microfluidics. His expertise and dedication to research have positioned him as a key player in advancing technology that enhances the functionality of various devices.

Collaborations

One of his notable collaborators is Timothy J Shepodd, with whom he has worked on various projects related to microfluidic technology. Their combined efforts contribute to the ongoing development of cutting-edge solutions in their field.

Conclusion

Matthew P Duncan's contributions to microfluidic technology through his patent and work at Sandia Corporation highlight his role as an influential inventor. His innovative approach to creating efficient devices without moving parts sets a precedent for future advancements in the industry.

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