Newark, CA, United States of America

Jennifer Dee Tan

USPTO Granted Patents = 9 

Average Co-Inventor Count = 7.1

ph-index = 5

Forward Citations = 716(Granted Patents)


Company Filing History:


Years Active: 1999-2014

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9 patents (USPTO):

Title: Jennifer Dee Tan - A Pioneer in Photolithographic Synthesis

Introduction

Jennifer Dee Tan, an accomplished inventor based in Newark, CA, has made significant contributions to the field of polymer synthesis. With a remarkable portfolio of nine patents, her work has advanced the techniques used in high-throughput processes and photolithography.

Latest Patents

Among her latest inventions is the "System for photolithographic synthesis of polymer arrays." This innovative process allows for the large-scale preparation of arrays containing various, positionally distinct polymer sequences with known monomer sequences. The method integrates high-throughput processing with advanced photolithographic techniques, making it essential for manufacturing polymer arrays.

Another notable patent from her portfolio is "Methods for photolithographic synthesis of polymer arrays utilizing anti-reflective coatings." Similar in nature to her previous invention, this approach also focuses on the large-scale preparation of polymer sequence arrays, utilizing a combination of high throughput steps and high-resolution techniques to optimize production efficiency.

Career Highlights

Throughout her professional journey, Jennifer has held significant roles at prominent firms such as Affymetrix, Inc. Her experiences in these organizations have likely played a vital role in her development as an inventor and in the evolution of her patented technologies.

Collaborations

Jennifer has collaborated with esteemed colleagues in her field, including Glenn H. McGall and Martin J. Goldberg. These partnerships have likely enriched her research and contributed to the innovative outcomes of her inventions.

Conclusion

Jennifer Dee Tan stands as a testament to the impact of innovation in the scientific community. Her dedication to the synthesis of polymers and her successful patent portfolio underscore the importance of her work. As the demand for advanced materials continues to grow, her contributions will undoubtedly play a crucial role in shaping the future of the industry.

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