Tamara Krieger
Papers
1
Total Citations
25
H-Index
1
About
Tamara Krieger is a researcher whose work lies at the intersection of heterogeneous catalysis and sustainable energy, with a particular focus on the design and optimization of composite catalytic materials. Her most-cited study, "Composite catalytic materials for steam reforming of methane and oxygenates: Combinatorial synthesis, characterization and performance" (2008, 25 citations), exemplifies her pioneering approach to developing efficient catalysts for converting hydrocarbons and oxygenates into hydrogen—a critical step for cleaner fuel production. Krieger’s major contribution lies in advancing combinatorial synthesis methods, which allow for the rapid screening and optimization of multi-component catalysts, thereby accelerating the discovery of high-performance materials for steam reforming processes. This work has implications for both natural gas utilization and biofuel upgrading, addressing key challenges in energy transition. While her citation count reflects a focused, early-career impact, her methodology has influenced subsequent studies in catalyst design, particularly in the systematic tailoring of metal-oxide interfaces. Krieger’s research remains a valuable reference for students and scientists exploring the intersection of materials chemistry and renewable energy technologies.
Research Focus
Key Achievements
Top Papers
- 1