2018Angewandte Chemie International EditionRequires access

Bonding of Two 8‐Electron Superatom Clusters

Shan Jin, Xuejuan Zou, Lin Xiong, Wenjun Du, Shuxin Wang, Yong Pei, Manzhou Zhu

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Abstract

Abstract We report the observation of dimerization of two 8‐electron superatom cluster units in the crystallographic structures of Au 2 Ag 42 (SAdm) 27 (BPh 4 ) and [Au 2 Ag 48 (S‐ t Bu) 20 (Dppm) 6 Br 11 ]Br(BPh 4 ) 2 nanoclusters. The crystallographic analysis reveals that both nanoclusters have a Au 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 analogous to that of a Ne atom dimer (Ne 2 ) according to the density functional theory (DFT) analysis. This is the first crystallographic observation of the dimerization of 8‐electron superatom units. This study enriches the fundamental knowledge on metal superatom clusters and implies the possibility for further assembling metal superatom building blocks into higher order superatom molecules.

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Abstract We report the observation of dimerization of two 8‐electron superatom cluster units in the crystallographic structures of Au 2 Ag 42 (SAdm) 27 (BPh 4 ) and [Au 2 Ag 48 (S‐ t Bu) 20 (Dppm) 6 Br 11 ]Br(BPh 4 ) 2 nanoclusters. The crystallographic analysis reveals that both nanoclusters have a Au 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 analogous to that of a Ne atom dimer (Ne 2 ) according to the density functional theory (DFT) analysis. This is the first crystallographic observation of the dimerization of 8‐electron superatom units. This study enriches the fundamental knowledge on metal superatom clusters and implies the possibility for further assembling metal superatom building blocks into higher order superatom molecules.

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Available abstract

Abstract We report the observation of dimerization of two 8‐electron superatom cluster units in the crystallographic structures of Au 2 Ag 42 (SAdm) 27 (BPh 4 ) and [Au 2 Ag 48 (S‐ t Bu) 20 (Dppm) 6 Br 11 ]Br(BPh 4 ) 2 nanoclusters. The crystallographic analysis reveals that both nanoclusters have a Au 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 analogous to that of a Ne atom dimer (Ne 2 ) according to the density functional theory (DFT) analysis. This is the first crystallographic observation of the dimerization of 8‐electron superatom units. This study enriches the fundamental knowledge on metal superatom clusters and implies the possibility for further assembling metal superatom building blocks into higher order superatom molecules.

Key concepts: Superatom, Nanoclusters, Icosahedral symmetry, Crystallography, Chemistry, Cluster (spacecraft), Metal, Atom (system on chip)

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