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Au103(SR)45, Au104(SR)45, Au104(SR)46 and Au105(SR)46 nanoclusters. | LitMetric

Au103(SR)45, Au104(SR)45, Au104(SR)46 and Au105(SR)46 nanoclusters.

Nanoscale

Department of Chemistry and Biochemistry, University of Mississippi, 352 Coulter Hall, Mississippi, MS 38677, USA.

Published: December 2013

High resolution ESI mass spectrometry of the "22 kDa" nanocluster reveals the presence of a mixture containing Au103(SR)45, Au104(SR)45, Au104(SR)46, and Au105(SR)46 nanoclusters, where R = -CH2CH2Ph. MALDI TOF MS data confirm the purity of the sample and a UV-vis spectrum shows minor features. Au102(SC6H5COOH)44, whose XRD crystal structure was recently reported, is not observed. This is due to ligand effects, because the 102 : 44 composition is produced using aromatic ligands. However, the 103-, 104- and 105-atom nanoclusters, protected by -SCH2CH2Ph and -SC6H13 ligands, are at or near 58 electron shell closing.

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Source
http://dx.doi.org/10.1039/c3nr03872fDOI Listing

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Au103(SR)45, Au104(SR)45, Au104(SR)46 and Au105(SR)46 nanoclusters.

Nanoscale

December 2013

Department of Chemistry and Biochemistry, University of Mississippi, 352 Coulter Hall, Mississippi, MS 38677, USA.

High resolution ESI mass spectrometry of the "22 kDa" nanocluster reveals the presence of a mixture containing Au103(SR)45, Au104(SR)45, Au104(SR)46, and Au105(SR)46 nanoclusters, where R = -CH2CH2Ph. MALDI TOF MS data confirm the purity of the sample and a UV-vis spectrum shows minor features. Au102(SC6H5COOH)44, whose XRD crystal structure was recently reported, is not observed.

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