Kingsport, TN, United States of America

Brent Alan Tennant

USPTO Granted Patents = 31 


 

Average Co-Inventor Count = 4.0

ph-index = 8

Forward Citations = 322(Granted Patents)


Location History:

  • Church Hill, TN (US) (2013 - 2015)
  • Kingsport, TN (US) (1984 - 2016)

Company Filing History:


Years Active: 1984-2016

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31 patents (USPTO):Explore Patents

Sure, here is the article about inventor Brent Alan Tennant based on the data provided:

Title: Spotlight on Inventor Brent Alan Tennant

Introduction:

Brent Alan Tennant, an accomplished inventor based in Kingsport, Tennessee (US), has made significant contributions to the field of catalysis with an impressive portfolio of 31 patents.

Latest Patents:

1. "Nickel modified catalyst for the production of hydroxy ether hydrocarbons by vapor phase hydrogenolysis of cyclic acetals and ketals": Brent's innovative catalyst compositions have demonstrated selectivity in converting cyclic acetal and ketal compounds to their hydroxy ether hydrocarbon counterparts.

2. "Promoted ruthenium catalyst for the improved hydrogenation of carboxylic acids to the corresponding alcohols": His ruthenium-rhenium-tin and ruthenium-rhenium catalysts have shown remarkable efficiency in reducing carboxylic acids to alcohols, showcasing his expertise in the field.

Career Highlights:

Tennant has honed his skills working with renowned companies such as Eastman Chemical Corporation and Eastman Kodak Company, where he has undoubtedly left a lasting impact with his innovative approach to catalytic processes.

Collaborations:

Throughout his career, Brent has collaborated closely with esteemed colleagues such as Charles Edwan Sumner, Jr. and Ronald Buford Sheppard, further enhancing his ability to develop groundbreaking solutions in the realm of catalysis.

Conclusion:

Inventor Brent Alan Tennant's pioneering work in catalysis has exemplified his dedication to pushing the boundaries of innovation. With a track record of transformative patents and strategic collaborations, Tennant continues to be a driving force in advancing catalytic technologies for a myriad of applications.

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