Alfred Hagemeyer
Papers
3
Total Citations
25
H-Index
3
About
Alfred Hagemeyer is a catalysis researcher whose work sits at the intersection of high-throughput experimentation, emissions control, and selective oxidation chemistry. He has made notable contributions to the development and screening of catalytic materials using combinatorial and high-throughput methodologies, enabling the rapid identification of promising catalyst candidates across a broad compositional space. Among his recognized contributions is his work on low-temperature selective catalytic reduction (SCR) and selective catalytic decomposition (SCD) for DeNOx applications, explored through innovative scanning mass spectrometer techniques — work that has garnered 15 citations and demonstrated the power of high-throughput screening in environmental catalysis. Hagemeyer has also contributed to the development of high surface area cerium oxide (CeO2), a critical material for emissions control, water-gas shift reactions, CO oxidation, and VOC combustion. Additionally, his research into redox molecular sieves for the selective oxidation of alcohols highlights his breadth across both environmental and fine chemical applications, employing library-based synthesis of up to 96 catalysts simultaneously. Hagemeyer's work reflects a commitment to accelerating catalyst discovery through systematic, data-driven approaches, making him a valuable figure for researchers interested in combinatorial catalysis and sustainable chemical processes.
Research Focus
Key Achievements
Top Papers
- 1
- 2High Surface Area Cerium Oxide5 citations · 2016
- 3SELECTIVE OXIDATION OF ALCOHOLS BY REDOX MOLECULAR SIEVES5 citations · 2005