Atomically Precise Nanocluster Assemblies Encapsulating Plasmonic Gold Nanorods.
Amrita ChakrabortyAnn Candice FernandezAnirban SomBiswajit MondalGanapati NatarajanGanesan ParamasivamTanja LahtinenHannu Häkkinennull NonappaThalappil PradeepPublished in: Angewandte Chemie (International ed. in English) (2018)
The self-assembled structures of atomically precise, ligand-protected noble metal nanoclusters leading to encapsulation of plasmonic gold nanorods (GNRs) is presented. Unlike highly sophisticated DNA nanotechnology, this strategically simple hydrogen bonding-directed self-assembly of nanoclusters leads to octahedral nanocrystals encapsulating GNRs. Specifically, the p-mercaptobenzoic acid (pMBA)-protected atomically precise silver nanocluster, Na4 [Ag44 (pMBA)30 ], and pMBA-functionalized GNRs were used. High-resolution transmission and scanning transmission electron tomographic reconstructions suggest that the geometry of the GNR surface is responsible for directing the assembly of silver nanoclusters via H-bonding, leading to octahedral symmetry. The use of water-dispersible gold nanoclusters, Au≈250 (pMBA)n and Au102 (pMBA)44 , also formed layered shells encapsulating GNRs. Such cluster assemblies on colloidal particles are a new category of precision hybrids with diverse possibilities.
Keyphrases
- sensitive detection
- energy transfer
- quantum dots
- high resolution
- reduced graphene oxide
- silver nanoparticles
- label free
- gold nanoparticles
- single molecule
- fluorescent probe
- visible light
- highly efficient
- mass spectrometry
- electron microscopy
- cell free
- circulating tumor
- magnetic resonance imaging
- magnetic resonance
- room temperature