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Ostwald ripening in an oxide-on-metal system

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arxiv 2105.01229 v2 pith:3FW6S76H submitted 2021-05-04 physics.chem-ph cond-mat.mes-hallcond-mat.mtrl-sci

Ostwald ripening in an oxide-on-metal system

classification physics.chem-ph cond-mat.mes-hallcond-mat.mtrl-sci
keywords ostwaldripeningislandsliquidoxide-on-metalsystemallowsaltering
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Ostwald ripening is a well-known physicochemical phenomenon in which smaller particles, characterized by high surface energy, dissolve and feed the bigger ones that are thermodynamically more stable. The effect is commonly observed in solid and liquid solutions, as well as in systems consisting of supported metal clusters or liquid droplets. Here, we provide the first evidence for the occurrence of Ostwald ripening in an oxide-on-metal system which, in our case, consists of ultrathin iron monoxide (FeO) islands grown on Ru(0001) single-crystal support. The results reveal that the thermally-driven sintering of islands allows altering their fine structural characteristics, including size, perimeter length, defect density and stoichiometry, which are crucial, e.g., from the point of view of heterogeneous catalysis.

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