Springfield, OR, United States of America

Jordan Loos

USPTO Granted Patents = 1 

Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Innovations of Jordan Loos in Graphite Metallic Bipolar Plate Materials

Introduction

Jordan Loos is an inventive mind based in Springfield, Oregon, who holds a significant patent in the manufacturing of advanced materials. His innovations focus on enhancing the properties of graphite metallic bipolar plates, which are crucial for various industrial applications.

Latest Patents

Jordan Loos is credited with a patent titled "Manufacturing Enhanced Graphite Metallic Bipolar Plate Materials." This invention outlines methods for producing a metal-infused graphitic material. One of the notable aspects of this patent involves creating impermeable devices through the electroplating and electroless deposition of metal onto the surfaces of a porous graphitic substrate. The intricate process involves replacing the voids in the substrate with an electrolyte solution containing dissolved metallic species, ensuring that the internal structure is effectively plated with metal.

Career Highlights

Currently, Jordan is associated with Nexgen Materials, LLC, where he applies his expertise in material science to foster innovation. His work stands out not only for its technical merit but also for its potential impact on manufacturing processes in various industrial sectors.

Collaborations

Jordan collaborates with talented colleagues, including Alexander A. Bistrika and Jacob Donovan Tenhoff. Their collective efforts at Nexgen Materials contribute to pioneering advancements in material technologies.

Conclusion

Jordan Loos exemplifies the spirit of innovation within the field of material science. With his patent on graphite metallic bipolar plates, he is paving the way for future developments that could enhance manufacturing efficiency and product performance across industries. His collaboration with skilled professionals further amplifies the potential for groundbreaking advancements.

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