Kennewick, WA, United States of America

Paul A Burrows


Average Co-Inventor Count = 9.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):

Title: The Innovations of Paul A. Burrows

Introduction

Paul A. Burrows is an accomplished inventor based in Kennewick, Washington. He holds a patent that significantly contributes to the field of organic light-emitting devices (OLEDs). His work focuses on the development of organometallic complexes as phosphorescent emitters, which enhance the efficiency and performance of OLED technology.

Latest Patents

Burrows' notable patent is titled "Organometallic complexes as phosphorescent emitters in organic LEDs." This invention describes organic light-emitting devices where the emissive layer contains a host material with an emissive molecule. The molecule luminesces when a voltage is applied across the heterostructure. The emissive molecule is selected from phosphorescent organometallic complexes, including cyclometallated platinum, iridium, and osmium complexes. The devices may also include an exciton blocking layer, which improves electroluminescent efficiency. The emitter layer comprises organometallic complexes of transition metals, allowing for easier synthesis and the incorporation of fluorescent molecules to fine-tune emission colors.

Career Highlights

Throughout his career, Paul A. Burrows has worked at prestigious institutions such as Princeton University and the University of Southern California. His research has focused on advancing the technology behind organic light-emitting devices, making significant contributions to the field.

Collaborations

Burrows has collaborated with notable colleagues, including Mark Edward Thompson and Peter I. Djurovich. Their combined expertise has furthered the development of innovative technologies in organic electronics.

Conclusion

Paul A. Burrows is a key figure in the advancement of organic light-emitting devices through his innovative patent on organometallic complexes. His contributions continue to influence the field of OLED technology and enhance the efficiency of electronic devices.

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