Los Alamos, NM, United States of America

Francois Nortier


Average Co-Inventor Count = 3.7

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2017-2019

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3 patents (USPTO):Explore Patents

Title: Innovations of Francois Nortier

Introduction

Francois Nortier is a notable inventor based in Los Alamos, NM (US). He has made significant contributions to the field of chemistry, particularly in the development of ligands for selective chelation of radioactive ions. With a total of 3 patents, his work has implications for both scientific research and practical applications in targeted therapies.

Latest Patents

Nortier's latest patents include innovative methods and compositions that enhance the selective chelation of bismuth radionuclide ions. One of his key inventions involves nitrogen-rich macrocyclic ligands and chelation complexes, which allow for the selective extraction of bismuth ions from mixtures containing actinium ions. This process involves exposing the ligands to an aqueous solution containing both types of radionuclide ions, leading to the formation of cationic complexes that can be separated effectively. Additionally, he has developed improved methods for generating compositions comprising actinium-225, which is crucial for various applications in medical and research fields.

Career Highlights

Francois Nortier has worked with prominent organizations such as Triad National Security, LLC and Los Alamos National Security, LLC. His experience in these institutions has allowed him to collaborate with leading experts in the field and contribute to groundbreaking research.

Collaborations

Nortier has collaborated with notable colleagues, including Eva Rachel Birnbaum and Jonathan Ward Engle. These partnerships have further enriched his research and innovation efforts.

Conclusion

Francois Nortier's contributions to the field of chemistry through his patents and collaborations highlight his role as an influential inventor. His work in developing selective chelation methods for radioactive ions is paving the way for advancements in targeted therapies and scientific research.

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