Felton, CA, United States of America

Jane Breeden


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 30(Granted Patents)


Company Filing History:


Years Active: 2006

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1 patent (USPTO):Explore Patents

Title: Innovations of Jane Breeden in Electroluminescent Polymer Ink

Introduction

Jane Breeden is an accomplished inventor based in Felton, CA (US). She has made significant contributions to the field of electroluminescent materials, particularly through her innovative work on screen printable polymer inks. Her research focuses on enhancing the performance and printability of light-emitting devices.

Latest Patents

Jane Breeden holds 1 patent for her invention titled "Screen printable electroluminescent polymer ink." This patent describes the addition of various additives to a soluble electroluminescent polymer in solution. These additives improve the printability and performance of screen printed light-emitting polymer-based devices. Examples of such additives include transparent polymers, gel-retarders, high viscosity liquids, organic and inorganic salts, and oxide nanoparticles. The use of these additives helps control the viscosity of the electroluminescent polymer ink, decreases the solvent evaporation rate, and enhances the ink's consistency and working time. Furthermore, these additives can improve charge injection and power efficiency in light-emitting devices manufactured from the ink.

Career Highlights

Jane is currently employed at Add-Vision, Inc., where she continues to develop her innovative ideas in the field of electroluminescent materials. Her work has positioned her as a key figure in advancing technology related to light-emitting devices.

Collaborations

Some of her notable coworkers include Susan A. Carter and John G. Victor, who contribute to the collaborative environment at Add-Vision, Inc. Their combined expertise fosters innovation and drives the development of new technologies.

Conclusion

Jane Breeden's contributions to the field of electroluminescent polymer inks demonstrate her commitment to innovation and excellence. Her work not only enhances the performance of light-emitting devices but also paves the way for future advancements in the industry.

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