Summit, NJ, United States of America

Charles A Mims


Average Co-Inventor Count = 4.0

ph-index = 3

Forward Citations = 36(Granted Patents)


Company Filing History:


Years Active: 1982-1992

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3 patents (USPTO):Explore Patents

Title: Innovations of Charles A Mims

Introduction

Charles A Mims is a notable inventor based in Summit, NJ (US). He has made significant contributions to the field of chemical engineering, particularly in the development of catalysts for hydrocarbon conversion. With a total of 3 patents to his name, Mims has demonstrated a commitment to advancing technology in this area.

Latest Patents

Mims' latest patents include innovative work on high surface area oxide compositions with a pyrochlore structure. He has disclosed processes for the conversion of hydrocarbons, especially methane, into higher hydrocarbons and olefins. These processes involve contacting hydrocarbons with a mixed metal oxide catalyst that possesses the pyrochlore structure. The catalysts are characterized by the general formula A.sub.n B.sub.2 O.sub.7-x, where A can be various mono-, di-, and trivalent metal cations, and B can be various tri-, tetra-, penta-, and hexavalent metal cations. Mims has also introduced novel, high surface area, mixed metal oxide catalysts with specific formulas, including A.sub.2 B.sub.2 O.sub.7, where A is divalent and B is niobium and/or tantalum.

Career Highlights

Charles A Mims is currently associated with Exxon Research and Engineering Company, where he continues to innovate and contribute to the field. His work has been instrumental in enhancing the efficiency of hydrocarbon conversion processes.

Collaborations

Mims has collaborated with notable colleagues, including Allan J Jacobson and Richard B Hall, to further his research and development efforts.

Conclusion

Charles A Mims is a distinguished inventor whose work in catalyst development has the potential to significantly impact the chemical engineering industry. His innovative patents reflect his dedication to advancing technology in hydrocarbon conversion processes.

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