DOE OSTI · 3008802
Heterogeneous catalysis: Optimal performance at a phase boundary?
Abstract
Most of the industrially used heterogeneous catalysts have been discovered by trial and error, and despite decades of experience, the discovery of new catalysts continues to be extremely challenging. The drive to uncover guiding principles in catalyst design is more present than ever. We share a series of observations indicating that optimal catalysts typically function at characteristic phase boundaries (e.g., abrupt changes in adsorbate coverage, catalyst structure, etc.) accessed in the reaction conditions. The catalyst exploits the associated instability—the desire to exist in multiple states simultaneously—as a driving force for chemical transformations. In other words, phase boundaries are good places to start the catalyst search, and indeed, we should focus on at least two phases at once rather than just one. Here, we substantiate this claim with several studies that combine statistical operando modeling and experiments. Transpiring from these observations is a hitherto unrecognized vector in catalyst discovery.
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Alexandrova, Anastassia N. [University of California, Los Angeles, CA (United States)] (ORCID:0000000230031911), Christopher, Phillip [University of California, Santa Barbara, CA (United States)]. 2025-06-23. Heterogeneous catalysis: Optimal performance at a phase boundary?. https://doi.org/10.1016/j.matt.2025.102209
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