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Atomically precise copper dopants in metal clusters boost up stability, fluorescence, and photocatalytic activity

Chemistry

Atomically precise copper dopants in metal clusters boost up stability, fluorescence, and photocatalytic activity

Y. Zhang, J. Zhang, et al.

Discover the fascinating synthesis of a novel rod-like nanocluster, [Au12Cu13(PPh3)10](SbF6)2, showcasing remarkable stability, fluorescence, and photocatalytic prowess in methanol photo-oxidation. This groundbreaking research, conducted by Yifei Zhang, Jingjing Zhang, Zhiwen Li, Zhaoxian Qin, Sachil Sharma, and Gao Li, unveils a significant advancement in nanocluster characterization.... show more
Abstract
The structurally precise alloy nanoclusters have been emerged as a burgeoning nanomaterial for their unique physical/chemical features. We here report a rod-like nanocluster [Au12Cu13(PPh3)10](SbF6)2 (Au12Cu13), which was generated through a transformation of a [Au25(PPh3)8]3+ intermediate in the presence of CuI, unveiled by time-dependent UV-vis spectroscopy, electrospray ionization mass spectrometry as well as single crystal X-ray diffraction. Au12Cu13 is comprised of two pentagonal bipyramids Au8Cu units and a pentagonal prism Cu11 unit, where the copper and gold species are presented in +1 and 0 chemical states. The Cu-dopants significantly improved the stability and fluorescence (quantum yield: ~34%, 34-folds of homo-Au25(PPh3)10Br7). The high stability of Au12Cu13 is attributed to the high binding energy of iodine ligands, Au-Cu synergistic effects and its 16-electon system as an 8-electron superatom dimer. Finally, the robust Au12Cu13 exhibited high catalytic activity (~92% conversion and ~84% methyl formate-selectivity) and good durability in methanol photo-oxidation.
Publisher
Communications Chemistry
Published On
Feb 08, 2023
Authors
Yifei Zhang, Jingjing Zhang, Zhiwen Li, Zhaoxian Qin, Sachil Sharma, Gao Li
Tags
nanocluster
synthesis
fluorescence
photocatalytic activity
methanol photo-oxidation
Au-Cu synergistic effects
stability
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