Towards Atomically Precise Supported Catalysts from Monolayer-Protected Clusters: The Critical Role of the Support

Publication date

2020-06-02

Authors

Longo, Alessandro
de Boed, Ewoud Jacob JanISNI 0000000506358094
Mammen, Nisha
van der Linden, MarteISNI 000000049329908X
Honkala, Karoliina
Häkkinen, Hannu
de Jongh, PetraISNI 0000000395610073
Donoeva, BairaISNI 0000000506363555

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Article
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Abstract

Controlling the size and uniformity of metal clusters with atomic precision is essential for fine-tuning their catalytic properties, however for clusters deposited on supports, such control is challenging. Here, by combining X-ray absorption spectroscopy and density functional theory calculations, it is shown that supports play a crucial role in the evolution of monolayer-protected clusters into catalysts. Based on the acidic nature of the support, cluster-support interactions lead either to fragmentation of the cluster into isolated Au–ligand species or ligand-free metallic Au0 clusters. On Lewis acidic supports that bind metals strongly, the latter transformation occurs while preserving the original size of the metal cluster, as demonstrated for various Aun sizes. These findings underline the role of the support in the design of supported catalysts and represent an important step toward the synthesis of atomically precise supported nanomaterials with tailored physico-chemical properties.

Keywords

density functional calculations, gold, monolayer-protected clusters, noncovalent interactions, X-ray absorption spectroscopy, Catalysis, Organic Chemistry

Citation

Longo, A, de Boed, E J J, Mammen, N, van der Linden, M, Honkala, K, Häkkinen, H, de Jongh, P E & Donoeva, B 2020, 'Towards Atomically Precise Supported Catalysts from Monolayer-Protected Clusters : The Critical Role of the Support', Chemistry - A European Journal, vol. 26, no. 31, pp. 7051-7058. https://doi.org/10.1002/chem.202000637