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Cover Picture: Two-Dimensional Triangular and Square Heterometallic Clusters: Influence of the Closed-Shell d10 Electronic Configuration (Angew. Chem. Int. Ed. 51/2009)
Guilded Rafts …︁ can be formed by heterometallic clusters. In their Communication on page 9663 ff., P. Braunstein, M. Bénard et al. describe the synthesis, structure, and theoretical analysis of a unique series of 2D raft mixed‐metal clusters of the type {M[m]}n (M=Cu, n=3; M=Ag, Au, n=4; the bridgi...
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Published in: | Angewandte Chemie International Edition 2009-12, Vol.48 (51), p.9567-9567 |
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container_title | Angewandte Chemie International Edition |
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creator | Sculfort, Sabrina Croizat, Pierre Messaoudi, Abdelatif Bénard, Marc Rohmer, Marie-Madeleine Welter, Richard Braunstein, Pierre |
description | Guilded Rafts …︁ can be formed by heterometallic clusters. In their Communication on page 9663 ff., P. Braunstein, M. Bénard et al. describe the synthesis, structure, and theoretical analysis of a unique series of 2D raft mixed‐metal clusters of the type {M[m]}n (M=Cu, n=3; M=Ag, Au, n=4; the bridging metalloligand [m] is {MoCp(CO)3}). Intramolecular, metallophilic d10⋅⋅⋅d10 interactions occur in the ν2‐triangular (M=Cu) or ν2‐square (M=Ag, Au) structures of the metal cores. |
doi_str_mv | 10.1002/anie.200905603 |
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subjects | coinage metals density functional calculations heterometallic clusters metal-metal interactions metallophilic interactions |
title | Cover Picture: Two-Dimensional Triangular and Square Heterometallic Clusters: Influence of the Closed-Shell d10 Electronic Configuration (Angew. Chem. Int. Ed. 51/2009) |
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