Austin, TX, United States of America

George W Watt


Average Co-Inventor Count = 2.0

ph-index = 3

Forward Citations = 14(Granted Patents)


Company Filing History:


Years Active: 1977-1980

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4 patents (USPTO):Explore Patents

Title: George W Watt: Innovator in Actinide Chemistry

Introduction

George W Watt is a notable inventor based in Austin, TX, who has made significant contributions to the field of actinide chemistry. With a total of four patents to his name, Watt's work focuses on the preparation and transformation of actinide compounds, particularly in relation to uranium and other actinides.

Latest Patents

Watt's latest patents include innovative methods for producing actinide sulfite tetrahydrate and actinide oxysulfite tetrahydrate. These patents describe a process where an actinide dioxide, such as uranium dioxide, is synthesized by reacting actinide nitrate hexahydrate with sodium dithionite. The resulting product can be converted to actinide dioxide through a controlled heating process in an inert atmosphere. Additionally, his work on actinide nitrate ditetrahydrofuranate outlines a method for preparing uranium dioxide using uranyl nitrate in combination with alkali or alkaline earth metal adducts, further showcasing his expertise in this specialized area.

Career Highlights

George W Watt is associated with Exxon Nuclear Company, Inc., where he has applied his knowledge and skills in actinide chemistry. His innovative approaches have contributed to advancements in the understanding and manipulation of actinide materials, which are crucial for various applications in nuclear science.

Collaborations

Watt has collaborated with Daniel W Baugh, Jr., a fellow professional in the field. Their partnership has likely fostered the development of new ideas and methodologies in actinide research.

Conclusion

George W Watt's contributions to actinide chemistry through his patents and work at Exxon Nuclear Company, Inc. highlight his role as a significant inventor in this specialized field. His innovative methods continue to influence the study and application of actinide compounds.

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