Computational Design of Clusters for Catalysis

Компьютерное проектирование кластеров для катализа
Elisa Jimenez‐Izal, Anastassia N. Alexandrova
2018-02-28

cluster catalysismetastable cluster statesmultiscale modelingoperando measurements
When small clusters are studied in chemical physics or physical chemistry, one perhaps thinks of the fundamental aspects of cluster electronic structure, or precision spectroscopy in ultracold molecular beams. However, small clusters are also of interest in catalysis, where the cold ground state or an isolated cluster may not even be the right starting point. Instead, the big question is: What happens to cluster-based catalysts under real conditions of catalysis, such as high temperature and coverage with reagents? Myriads of metastable cluster states become accessible, the entire system is dynamic, and catalysis may be driven by rare sites present only under those conditions. Activity, selectivity, and stability are highly dependent on size, composition, shape, support, and environment. To probe and master cluster catalysis, sophisticated tools are being developed for precision synthesis, operando measurements, and multiscale modeling. This review intends to tell the messy story of clusters in catalysis.
1
Catalytic activity, selectivity, and stability of clusters strongly depend on size, composition, shape, support, and environment.
2
Cluster-based catalysts under realistic catalytic conditions access many metastable states rather than only the cold ground state.
3
Rare cluster sites that appear only under high temperature and reagent coverage can drive catalysis.
4
The dynamic nature of clusters under reaction conditions challenges traditional static studies and necessitates tools to probe non-equilibrium behavior.
5
Understanding cluster catalysis requires multiscale modeling combined with precision synthesis and operando measurements.

Clusters used as catalysts (cluster-based catalysts) under realistic catalytic conditions

How cluster-based catalysts behave under realistic catalytic conditions — including access to myriad metastable states, dynamic structural changes with temperature and reagent coverage, and resulting effects on activity, selectivity, and stability as functions of size, composition, shape, support, and environment

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2018-02-28
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Elisa Jimenez‐Izal
Anastassia N. Alexandrova
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