X-ray crystal structure and doping mechanism of bimetallic nanocluster Au 36-x Cu x (m-MBT) 24 (x = 1-3)

A novel Au Cu (m-MBT) (x = 1-3, m-MBT = 3-methylbenzenethiolate) nanocluster has been prepared. According to the X-ray single crystal diffractometer, the structure of Au Cu (m-MBT) is similar to that of Au (SPh Bu) . The Au Cu (m-MBT) nanocluster contains a face-centered cubic (FCC) M core, which is...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2018-01, Vol.47 (2), p.475-480
Hauptverfasser: Rao, Bo, Zhao, Tong, Yang, Sha, Chai, Jinsong, Pan, Yiting, Weng, Shiyin, Yu, Haizhu, Li, Xiaowu, Zhu, Manzhou
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Sprache:eng
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Zusammenfassung:A novel Au Cu (m-MBT) (x = 1-3, m-MBT = 3-methylbenzenethiolate) nanocluster has been prepared. According to the X-ray single crystal diffractometer, the structure of Au Cu (m-MBT) is similar to that of Au (SPh Bu) . The Au Cu (m-MBT) nanocluster contains a face-centered cubic (FCC) M core, which is protected by 4 M S (M = Au/Cu) staple motifs and 12 bridging SR ligands. The Cu dopants could possibly occupy 14 sites (six in the sub-surface and eight in the staple motifs). Spectral monitoring indicates that the number of Cu dopants sequentially increased on increasing the amount of Cu precursors (relative to a Au control). Meanwhile, DFT calculations imply that the maximum doping number of Cu is 3, and doping occurs preferentially at the staple sites and sub-surface sites (instead of the centre of the core). Because the atomic orbital of the peripheral locations hardly contributes to the frontier molecular orbitals, the UV-vis of the AuCu alloy is almost the same as that of its homometallic Au counterpart.
ISSN:1477-9226
1477-9234
DOI:10.1039/C7DT02959D