2018
DOI: 10.1002/anie.201810718
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Bonding of Two 8‐Electron Superatom Clusters

Abstract: We report the observation of dimerization of two 8electron superatom cluster units in the crystallographic structures of Au 2 Ag 42 (SAdm) 27 (BPh 4 )a nd [Au 2 Ag 48 (S-t Bu) 20 -(Dppm) 6 Br 11 ]Br(BPh 4 ) 2 nanoclusters.T he crystallographic analysis reveals that both nanoclusters have aA u 2 Ag 24 core made of two separated icosahedral without sharing metal atoms,and each icosahedron has an eight-electron (8e) closed shell (1S 2 1P 6 ). The valence electronic structures of these two nanoclusters are analogo… Show more

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Cited by 45 publications
(57 citation statements)
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References 61 publications
(197 reference statements)
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“…By comparing assembly methods for phosphine‐capped nanoclusters, more methods were observed for thiolated‐ or dual‐ligand‐capped supermolecules . The thiolated cluster obtained by superatomic M 13 assembly was Au 38 (SR) 24 .…”
Section: Geometric and Electronic Structures Of Metal Superatomic Clumentioning
confidence: 99%
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“…By comparing assembly methods for phosphine‐capped nanoclusters, more methods were observed for thiolated‐ or dual‐ligand‐capped supermolecules . The thiolated cluster obtained by superatomic M 13 assembly was Au 38 (SR) 24 .…”
Section: Geometric and Electronic Structures Of Metal Superatomic Clumentioning
confidence: 99%
“…), as a superatomic unit, has been reported for many years . As a building block, this unit can be assembled into different supramolecular structures by controlling the capping ligands . Different assembly forms of the M 13 unit not only contribute to the construction of superatomic aggregates with novel structures, but also have a remarkable effect on the optical, catalytic, and other properties of the superatomic aggregates .…”
Section: Introductionmentioning
confidence: 99%
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