4.7 Article

An alkynyl-protected Ag13-xCu6+x nanocluster for catalytic hydrogenation

Journal

DALTON TRANSACTIONS
Volume 52, Issue 1, Pages 52-57

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2dt03295c

Keywords

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Funding

  1. Joint Fund of the Yulin University
  2. Dalian National Laboratory for Clean Energy [2021007]
  3. National Natural Science Foundation of China [22268046, 52262015]
  4. Science and Technology Bureau project of Yulin [CXY-2021-106-01]
  5. Doctoral Scientific Research Foundation of Yulin University [18GK24]

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A novel alkynyl-stabilized silver-copper alloy nanocluster was synthesized and it was found that the structure of the alkynyl ligands played an important role in dictating the structure of the nanocluster. This nanocluster showed high performance in the catalytic hydrogenation of 4-nitrophenol.
A novel alkynyl-stabilized silver-copper alloy nanocluster with the composition of [Ag13-xCu6+x((BuC6H4C)-Bu-t equivalent to C)(14)(PPh3)(6)](SbF6)(3) was prepared by the (PPh3)(2)CuBH4-mediated reduction approach. The nanocluster features a centred disordered-octahedral Ag7Cu6 kernel, which is protected by hybrid alkynyl and triphenylphosphine ligands. Structural comparison of this two-electron nanocluster with other alkynyl-capped Ag/Cu ones suggested that the structure of alkynyl ligands played an important role in dictating the structures of the resulting nanoclusters. The title cluster showed high performance in the catalytic hydrogenation of 4-nitrophenol, indicative of the bright future of cluster-based catalysts.

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