4.8 Article

A Super-Oxidized Radical Cationic Icosahedral Boron Cluster

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JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 142, 期 30, 页码 12948-12953

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AMER CHEMICAL SOC
DOI: 10.1021/jacs.0c06159

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资金

  1. Center for Synthetic Control Across Length-scales for Advancing Rechargeables (SCALAR), an Energy Frontier Research Center - U.S. Department of Energy (DOE), Office of Science, Basic Energy Sciences (BES) [DE-SC0019381]
  2. American Chemical Society Petroleum Research Fund
  3. Arnold and Mabel Beckman Foundation
  4. Agency for Science, Technology and Research (Singapore)
  5. Resnick Sustainability Institute at Caltech
  6. UCLA Graduate Division
  7. National Science Foundation [NSF-1531940]

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While the icosahedral closo-[B12H12](2-) F cluster does not display reversible electrochemical behavior, perfunctionalization of this species via substitution of all 12 B-H vertices with alkoxy or benzyloxy (OR) substituents engenders reversible redox chemistry, providing access to clusters in the dianionic, monoanionic, and neutral forms. Here, we evaluated the electrochemical behavior of the electron-rich B-12(O-3-methylbutyl)(12) (1) cluster and discovered that a new reversible redox event that gives rise to a fourth electronic state is accessible through one-electron oxidation of the neutral species. Chemical oxidation of 1 with [N(2,4-Br2C6H3)(3)](center dot+) afforded the isolable [1](center dot+) cluster, which is the first example of an open-shell cationic B-12 cluster in which the unpaired electron is proposed to be delocalized throughout the boron cluster core. The oxidation of 1 is also chemically reversible, where treatment of [1](center dot+) with ferrocene resulted in its reduction back to 1. The identity of [1](center dot+ )is supported by EPR, UV-vis, multinuclear NMR (H-1, B-11), and X-ray photoelectron spectroscopic characterization.

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