Template-Free Supracolloidal Self-Assembly of Atomically Precise Gold Nanoclusters: From 2D Colloidal Crystals to Spherical Capsids

We report supracolloidal self‐assembly of atomically precise and strictly monodisperse gold nanoclusters involving p‐mercaptobenzoic acid ligands (Au102‐pMBA44) under aqueous conditions into hexagonally packed monolayer‐thick two‐dimensional facetted colloidal crystals (thickness 2.7 nm) and their b...

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Veröffentlicht in:Angewandte Chemie International Edition 2016-12, Vol.55 (52), p.16035-16038
Hauptverfasser: Nonappa, Lahtinen, Tanja, Haataja, Johannes. S., Tero, Tiia-Riikka, Häkkinen, Hannu, Ikkala, Olli
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Sprache:eng
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Zusammenfassung:We report supracolloidal self‐assembly of atomically precise and strictly monodisperse gold nanoclusters involving p‐mercaptobenzoic acid ligands (Au102‐pMBA44) under aqueous conditions into hexagonally packed monolayer‐thick two‐dimensional facetted colloidal crystals (thickness 2.7 nm) and their bending to closed shells leading to spherical capsids (d ca. 200 nm), as controlled by solvent conditions. The 2D colloidal assembly is driven in template‐free manner by the spontaneous patchiness of the pMBA ligands around the Au102‐pMBA44 nanoclusters preferably towards equatorial plane, thus promoting inter‐nanocluster hydrogen bonds and high packing to planar sheets. More generally, the findings encourage to explore atomically precise nanoclusters towards highly controlled colloidal self‐assemblies. Colloidal self‐assembly of atomically precise, monodisperse gold nanoclusters to 2D crystalline nanosheets is reported. The nanosheets bend to closed shells and form spherical capsids.
ISSN:1433-7851
1521-3773
DOI:10.1002/anie.201609036