Boston, MA, United States of America

Matthew R Denlinger


Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Matthew R. Denlinger: Innovator in Lithium Ion Battery Anode Technology

Introduction

Matthew R. Denlinger is a notable inventor based in Boston, MA. He has made significant contributions to the field of battery technology, particularly in the development of lithium-ion battery anodes. With a focus on enhancing battery efficiency and performance, Denlinger’s work has implications for a range of electronic devices.

Latest Patents

Matthew holds a patent for his innovative method titled "Forming gas treatment of lithium ion battery anode graphite powders." This invention outlines a process in which a quantity of graphite powder is initially heated to a temperature between 1000 and 2000°C during a first heating period. Following this, the graphite is cooled down while being exposed to a forming gas—a combination of hydrogen and an inert gas—either during the heating or cool down phases. This technique aims to improve the quality and performance of battery anodes, thereby contributing to advancements in lithium-ion battery technology.

Career Highlights

Denlinger is currently affiliated with UT-Battelle, Inc., a company known for its focus on cutting-edge research and development in battery technologies. His expertise in material science and engineering has allowed him to make substantial strides in battery innovation, setting a benchmark for future advancements in the field.

Collaborations

Throughout his career, Denlinger has collaborated with distinguished professionals such as Cristian Ion Contescu and Nidia C. Gallego. These collaborations emphasize the importance of teamwork in driving forward innovations and tackling complex challenges in the realm of material science.

Conclusion

Matthew R. Denlinger represents a pivotal figure in the landscape of battery technology with his innovative approaches to lithium-ion battery anode production. His contributions not only reflect his expertise but also pave the way for improved energy storage solutions that can benefit a variety of applications in modern technology.

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