Raleigh, NC, United States of America

Yue S Chen

USPTO Granted Patents = 2 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 1988-1989

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2 patents (USPTO):Explore Patents

Title: Innovations by Inventor Yue S. Chen in Cellulose Solutions

Introduction

Yue S. Chen is an accomplished inventor based in Raleigh, North Carolina, known for her significant contributions to the field of cellulose materials. With a total of two patents to her name, she has demonstrated a keen ability to innovate within the area of chemical engineering and materials science.

Latest Patents

Her latest patents include innovative methodologies for creating anisotropic cellulose articles, fibers, and films. One notable patent details a process for forming lyotropic mesophase (liquid crystalline) solutions of cellulose in an ammonia/ammonium thiocyanate solvent. This groundbreaking approach allows for precise control over the solution's nature, enabling the selective production of cellulose mesophases with either nematic or cholesteric characteristics. From these solutions, Chen has successfully produced high-strength, high-modulus fibers primarily from the nematic phase, alongside films that are derived from the cholesteric phase.

Career Highlights

Yue S. Chen is affiliated with North Carolina State University, where she leverages her expertise to advance research on cellulose materials. Her work not only contributes to academic knowledge but also holds practical implications for various industries that utilize cellulose-based products.

Collaborations

Throughout her career, Chen has collaborated with notable colleagues such as John A. Cuculo and Michael H. Theil. These partnerships have likely enriched her research endeavors, leading to innovative solutions and applications in the field.

Conclusion

Yue S. Chen’s inventive spirit and commitment to advancing cellulose technology have resulted in significant patents that highlight her expertise and contributions to materials science. Her work continues to inspire future innovations within the realm of cellulose applications.

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