4.7 Article

Oxidation states of graphene: Insights from computational spectroscopy

期刊

JOURNAL OF CHEMICAL PHYSICS
卷 131, 期 24, 页码 -

出版社

AMER INST PHYSICS
DOI: 10.1063/1.3276339

关键词

ab initio calculations; binding energy; density functional theory; graphene; oxidation; X-ray photoelectron spectra

资金

  1. NFSC [20803071, 20933006, 50721091]
  2. MOE [FANEDD-2007B23, NCET-08-0521]
  3. CAS [KJCX2-YW-W22]
  4. National Key Basic Research Program [2006CB922004]
  5. USTC-SCC
  6. SCCAS
  7. Shanghai Supercomputer Center

向作者/读者索取更多资源

When it is oxidized, graphite can be easily exfoliated forming graphene oxide (GO). GO is a critical intermediate for massive production of graphene, and it is also an important material with various application potentials. With many different oxidation species randomly distributed on the basal plane, GO has a complicated nonstoichiometric atomic structure that is still not well understood in spite of intensive studies involving many experimental techniques. Controversies often exist in experimental data interpretation. We report here a first principles study on binding energy of carbon 1s orbital in GO. The calculated results can be well used to interpret experimental x-ray photoelectron spectroscopy (XPS) data and provide a unified spectral assignment. Based on the first principles understanding of XPS, a GO structure model containing new oxidation species epoxy pair and epoxy-hydroxy pair is proposed. Our results demonstrate that first principles computational spectroscopy provides a powerful means to investigate GO structure.

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