Zach Hogan
Papers
1
Total Citations
5
H-Index
1
About
Zach Hogan’s research centers on the synthesis and application of high-surface-area metal oxides for heterogeneous catalysis, with a particular focus on cerium oxide (ceria). His most cited work, “High Surface Area Cerium Oxide” (2016, 5 citations), addresses a critical bottleneck in low-temperature catalysis: the need for ceria with enhanced surface area to boost reaction rates in processes like emissions control, water-gas shift, CO oxidation, and volatile organic compound destruction. By developing methods to produce ceria with significantly increased surface area, Hogan provided a platform for more efficient catalyst supports and active components, directly impacting the design of cleaner industrial and automotive technologies. While his citation count is modest, the foundational nature of this contribution—enabling higher catalytic activity in demanding low-temperature applications—marks him as a researcher whose work underpins practical advances in environmental catalysis. His achievement lies not in volume of citations but in the targeted utility of his materials for solving real-world emission and energy challenges.
Research Focus
Key Achievements
Top Papers
- 1High Surface Area Cerium Oxide5 citations · 2016