Palo Alto, CA, United States of America

Melissa E Kreider

This inventor holds 1 USPTO granted patent. Top assignee: Leland Stanford Junior University. Active years: 2024.


% Patents Active = 100.0

Average Co-Inventor Count = 9.0

ph-index = 1


Company Filing History:


Years Active: 2024

Loading Chart...
1 patent (USPTO):Explore Patents

Title: Melissa E Kreider: Innovator in Electrode Catalysts

Introduction

Melissa E Kreider is a prominent inventor based in Palo Alto, CA (US). She has made significant contributions to the field of electrode catalysts, particularly in the area of oxygen reduction reactions. Her innovative work has garnered attention in both academic and industrial circles.

Latest Patents

Melissa holds a patent for her invention titled "Oxidized surface layer on transition metal nitrides: active catalysts for the oxygen reduction reaction." This patent describes an electrode catalyst that includes a transition metal nitride layer on a substrate, along with an ORR surface oxide layer deposited on the transition metal nitride layer. The ORR surface oxide layer can consist of anywhere from sub-monolayer to 20 surface oxide monolayers. This invention has the potential to enhance the efficiency of various electrochemical processes.

Career Highlights

Melissa is affiliated with Leland Stanford Junior University, where she continues to advance her research in materials science and electrochemistry. Her work is characterized by a commitment to innovation and a focus on practical applications of her research findings.

Collaborations

Melissa has collaborated with notable colleagues, including Michaela Burke Stevens and Alessandro Gallo. These partnerships have fostered a dynamic research environment that encourages the exchange of ideas and expertise.

Conclusion

Melissa E Kreider is a trailblazer in the field of electrode catalysts, with a patent that showcases her innovative approach to enhancing oxygen reduction reactions. Her contributions to research and collaboration with esteemed colleagues further solidify her impact in the scientific community.

Profile summary based on public USPTO records.
Please report any incorrect information to [email protected]
Loading…