4.7 Article

Understanding Doping Effects on Electronic Structures of Gold Superatoms: A Case Study of Diphosphine-Protected M@Au12 (M = Au, Pt, Ir)

期刊

INORGANIC CHEMISTRY
卷 59, 期 24, 页码 17889-17895

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.0c00879

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资金

  1. ESICB
  2. Ministry of Education, Culture, Sports, Science, and Technology of Japan (JSPS) [JPMSP09A19UT0048, JP17H01182, JP19K15499]
  3. Iketani Science and Technology Foundation
  4. Joint Research by Institute for Molecular Science [19-607]

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Dopants into ligand-protected Au superatoms have been hitherto limited to group X-XII elements (Pt, Pd, Ag, Cu, Hg, and Cd). To expand the scope of the dopants to the group IX elements, we synthesized unprecedented [IrAu12(dppe)(5)Cl-2](+) [IrAu12; dppe = 1,2-bis(diphenylphosphino)ethane] and [PtAu12(dppe)(3)Cl-2](2+) (PtAu12) and compared their electronic structures with that of [Au-13(dppe)(3)Cl-2](3+) (Au-13). Single-crystal Xray diffractometry, P-31{H-1} NMR, and Ir L-3-edge extended X-ray absorption fine structure analysis of IrAu12 revealed that the single Ir atom is located at the center of the icosahedral IrAu12 core. Electrochemical analysis demonstrated that the energy levels of the highest occupied molecular orbitals are upshifted in the order of Au-13 < PtAu12 < IrAu12. This trend was qualitatively explained in such a manner that the jellium core potential at the central position becomes shallower by replacing Au+ with Pt-0 and future with Ir-, IrAu12 underwent reversible redox reactions between the charge states of 1+ and 2+. The gradual increase of the energy gap between the highest occupied molecular orbital and lowest unoccupied molecular orbital in the order of Au-13 < PtAu12 < IrAu12 was observed by electrochemical measurement and optical spectroscopy. This study provides a simple guiding principle to tune the electronic structures of heterometal-doped superatoms.

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