Cambridge, MA, United States of America

David Powers


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: **David Powers: Innovator in Palladium Chemistry**

Introduction

David Powers, a talented inventor based in Cambridge, MA, has made significant contributions to the field of chemistry through innovative research. With one patent under his name, he has developed a novel approach to utilizing high-valent palladium fluoride complexes, honing in on applications that advance organic fluorination techniques.

Latest Patents

David’s notable patent, titled "High-valent palladium fluoride complexes and uses thereof," revolves around the creation of unique high-valent palladium fluoride complexes. These complexes are characterized by multi-dentate ligands that provide stability to the octahedral coordination sphere of the palladium(IV) atom. This innovation is particularly relevant for fluorinating organic compounds, especially those containing aryl groups, making it valuable for applications in positron emission tomography (PET) imaging.

Career Highlights

Currently, David Powers is associated with Harvard College, where he conducts advanced research and contributes to the academic community. His work combines theoretical exploration with practical applications, enhancing the understanding and utilization of palladium chemistry in various pharmaceutical and diagnostic processes.

Collaborations

Throughout his career, David has collaborated with esteemed colleagues such as Takeru Furuya and Tobias Ritter. These partnerships have not only fostered an environment of creativity and innovation but have also led to groundbreaking research and development in the field.

Conclusion

David Powers is a promising inventor whose work in palladium fluoride complexes is paving the way for enhanced methodologies in organic chemistry. As he continues to innovate and explore new possibilities, his contributions are likely to impact both scientific research and practical applications within the industry.

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