Corning, NY, United States of America

William H Tomb


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 1977

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1 patent (USPTO):Explore Patents

Title: The Innovations of William H. Tomb

Introduction

William H. Tomb is a notable inventor based in Corning, NY (US). He has made significant contributions to the field of enzyme technology. His work primarily focuses on improving the stability and efficiency of enzyme carriers.

Latest Patents

William H. Tomb holds a patent for "Enzyme carriers." This innovation enhances the half-life of enzymes that have been immobilized through chemical coupling with silane coupling agents to inorganic carriers. The patent describes a method where the carrier is treated to increase its water-durability. This treatment involves coating the carrier with a solution containing a metal, whose oxide is more water-durable than the carrier itself. After coating, the carrier is fired to create a continuous metal oxide layer on its surface. The treated carriers are then silanized for chemical coupling with enzymes. This method provides a significant improvement in the preparation and use of enzyme composites.

Career Highlights

William H. Tomb has had a distinguished career at Corning Glass Works. His innovative approach to enzyme carriers has positioned him as a key figure in the development of enzyme technology. His work has implications for various applications, including biocatalysis and industrial processes.

Collaborations

William H. Tomb has collaborated with Howard H. Weetall, contributing to advancements in enzyme technology. Their partnership has fostered innovation and has led to the development of new methods in the field.

Conclusion

William H. Tomb's contributions to enzyme technology through his patent on enzyme carriers demonstrate his innovative spirit and dedication to improving scientific processes. His work continues to influence the field and showcases the importance of advancements in enzyme stability and efficiency.

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