4.8 Article

Structural Elucidation and Regioselective Functionalization of An Unexplored Carbide Cluster Metallofullerene Sc2C2@Cs(6)-C82

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 133, Issue 48, Pages 19553-19558

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja208841w

Keywords

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Funding

  1. Next Generation Super Computing Project (Nanoscience Project)
  2. Nanotechnology Support Project
  3. Ministry of Education, Culture, Sports, Science, and Technology of Japan [22000009]
  4. JST
  5. MICINN
  6. [20108001]
  7. [20245006]
  8. [20036008]
  9. [20038007]
  10. Grants-in-Aid for Scientific Research [22750030, 20108001, 20108002, 20245006] Funding Source: KAKEN

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A Sc2C84 isomer, previously assumed to be Sc-2@C-84, is unambiguously identified as a new carbide cluster metallofullerene Sc2C2@C-s(6)-C-82 using both NMR spectroscopy and X-ray crystallography. The C-13-nuclei signal of the internal C-2-unit was observed at 244.4 ppm with a 1596 C-13-enriched sample. Temperature-dependent dynamic motion of the internal Sc2C2 cluster is also revealed with NMR spectrometry. Moreover, the chemical property of Sc2C2@C-s(6)-C-82 is investigated for the first time using 3-triphenylmethyl-5-oxazolidinone (1) which provides a 1,3-dipolar reagent under heating. Regarding the low cage symmetry of this endohedral which contains 44 types of nonequivalent cage carbons, it is surprising to find that only one monoadduct isomer is formed in the reaction. Single-crystal X-ray results of the isolated pyrrolidino derivative Sc2C2@C-s(6)-C82N(CH2)(2)Trt (2) reveal that the addition takes place at a [6,6]-bond junction, which is far from either of the two Sc atoms. Such a highly regioselective addition. pattern can be reasonably interpreted by analyzing the frontier molecular orbitals of the endohedral. Electronic and electrochemical investigations reveal that adduct 2 has a larger highest occupied molecular orbital lowest unoccupied molecular orbital (HOMO LUMO) gap than pristine Sc2C2@C-s(6)-C-82; accordingly, it is more stable.

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