Patchogue, NY, United States of America

Erik Michael Allan Busby


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Erik Michael Allan Busby

Introduction

Erik Michael Allan Busby is a notable inventor based in Patchogue, NY (US). He has made significant contributions to the field of molecular compositions and materials, particularly in the area of efficient multiple exciton generation. His work has implications for organic electronic devices, including organic photovoltaic systems.

Latest Patents

Erik Busby holds a patent for "Molecular compositions, materials, and methods for efficient multiple exciton generation." This invention provides compounds, compositions, and methods for their preparation that enable efficient intramolecular fission. The inventive materials include organic oligomers and polymers designed to exhibit strong intrachain donor-acceptor interactions, allowing for intramolecular singlet fission. This process can generate triplet populations in very high yields, exceeding 170%. The patent focuses on polymers of the general formula: [SA-SD]n, where SA is a strong electron acceptor, SD is a strong electron donor, and n is a positive integer equal to or greater than two. The applications of these polymers extend to their use as semiconductors in organic electronic devices, particularly in organic photovoltaic devices.

Career Highlights

Throughout his career, Erik Busby has worked with prestigious institutions such as Columbia University and Brookhaven Science Associates, LLC. His research has contributed to advancements in the field of organic electronics and materials science.

Collaborations

Erik has collaborated with notable colleagues, including Luis Miguel Campos and Matthew Y Sfeir. These collaborations have further enriched his research and innovation in the field.

Conclusion

Erik Michael Allan Busby is a distinguished inventor whose work in molecular compositions and materials has the potential to revolutionize organic electronic devices. His innovative approaches to efficient multiple exciton generation highlight the importance of research in advancing technology.

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