NSNate ShakouriPrincipal Scientist

Case Study

Bimetallic Catalysts For Alcohol Electrooxidation

A public-safe case study summary. Proprietary details, exact operating conditions, and sensitive performance data are omitted unless already public or approved for release.

Case Study

Title

Bimetallic Catalysts For Alcohol Electrooxidation

Technical Area

Electrocatalysis, methanol oxidation, supported Pt/Pt-Ru catalysts, and energy-conversion materials

Problem

Alcohol electrooxidation catalysts must manage surface composition, support interactions, active-site accessibility, durability, and mass transport under electrochemical conditions.

Approach

Evaluate public work on oxygen-functionalized multi-walled carbon nanotube supports for Pt and Pt-Ru catalysts, along with controlled-composition Ru-Pt systems.

Methods Used

  • Bimetallic catalyst synthesis
  • Support functionalization
  • Electrochemical activity assessment
  • Surface-composition review
  • Catalyst-support interaction analysis
  • Publication-backed technical synthesis

Outcome

Public records include ACS Applied Energy Materials and Catalysis Today publications on methanol electrooxidation catalyst systems. Current citation metrics are available through the live Google Scholar profile.

Technical Significance

This case reinforces a recurring synthesis-to-performance thread across electrocatalyst design, characterization, and reaction engineering.

Confidentiality Note

Uses public publication and Scholar-profile information only. Does not disclose non-public experimental conditions, internal datasets, or proprietary catalyst-development follow-ons.

Related Public Source

ACS publication